list of citations from the web of science, scopus and pop.exe

44
1 Забелязани цитати в чужди издания на публикациите на Хозе Канети Известия на Отделението за xимически науки 3 (1970), 83 1. K. Fikents, Arch. Pharm. 313, 481 (1980) 2. R. Rekker, Pharmacochemistry of 1,3-indandiones, Elsevier, 1982 3. Н. С. Магомедова, Ж. Физ. Хим. 59 (1985), 365 (H) KANETI J; YUCHNOVSKI, I., ELECTRONIC SUBSTITUENT EFFECTS AND CARBONYL STRETCHING FREQUENCIES OF 2-ARYLMETHYLENE- 1,3-INDANDIONES: Tetrahedron 26, 4397 (1970) 1. A. Perjessy, Tetrahedron 27, 6159 (1971) 2. A. Perjessy, Tetrahedron 28, 1025 (1972) 3. A. Perjessy, Tetrahedron 29, 3189 (1973) 4. A. Perjessy, Tetrahedron 29, 3207 (1973) 5. Z. Rappoport, J. Chem. Soc. Perkin II 1973, 1045 6. В. И. Савин, Ж. Орг. Хим. 9, 1101 (1973) 7. L. A. Yanovskaya, Tetrahedron 29, 43221 (1973) 8. Л .А. Яновская, Усп. хим. 1646 (1976) 9. M. K. Bachlaus, Int. J. Pa. Phys. 14, 234 (1976) 10. L. Krasnec, Coll. Czechosl. Chem. Commun. 41, 2696 (1976) 11. Е. Гудриниеце, Строение и таутомерн. превращения бета-дикарбонил. соединений, Рига 1977: с. 91-101; табл. 110 - 113. 12. J. P. Poupelin, Eur. J. Med. Chem. 14, 171 (1979) 13. J. Ploquin, J. Heterocycl. Chem. 17, 961 (1980) 14. J. Courant, Eur. J. Med. Chem. 24, 145 (1989) 15. S. Minchev, Z. Naturforsch. B 45, 543 (1990) 16. A. Michalchuk, Al. Verenich, O. V. Gulyakevich, DAN SSSR 323, 82 (1992) 17. A. S. Batsanov, M. R. Bryce, S. R. Davies, J. Chem. Soc. Perkin II, 313-319 (1993) A Theoretical Study of the Active Site of Orotidine-5'-phosphate Pyrophosphorylase: J. Kaneti, E. Golovinsky, I. Yuchnovski, D. Genchev, J. Theoretical Biology 26, 19- 27 (1970) 1. A. W. Burges, Search 3, 74 (1972) 2. R. Gaspar, Acta Biochim. Helv. 7, 275 (1972) 3. J. Victor, J. Biol. Chem. 254, 2647 (1979) 4. G. J. Krauss, Biomed. Bioc. 42, 1045 (1983)

Upload: lycong

Post on 03-Jan-2017

228 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: List of citations from the Web of Science, Scopus and PoP.exe

1

Забелязани цитати в чужди издания

на публикациите на Хозе Канети Известия на Отделението за xимически науки 3 (1970), 83 1. K. Fikents, Arch. Pharm. 313, 481 (1980) 2. R. Rekker, Pharmacochemistry of 1,3-indandiones, Elsevier, 1982 3. Н. С. Магомедова, Ж. Физ. Хим. 59 (1985), 365

(H) KANETI J; YUCHNOVSKI, I., ELECTRONIC SUBSTITUENT EFFECTS AND CARBONYL STRETCHING FREQUENCIES OF 2-ARYLMETHYLENE-

1,3-INDANDIONES: Tetrahedron 26, 4397 (1970) 1. A. Perjessy, Tetrahedron 27, 6159 (1971) 2. A. Perjessy, Tetrahedron 28, 1025 (1972) 3. A. Perjessy, Tetrahedron 29, 3189 (1973) 4. A. Perjessy, Tetrahedron 29, 3207 (1973) 5. Z. Rappoport, J. Chem. Soc. Perkin II 1973, 1045 6. В. И. Савин, Ж. Орг. Хим. 9, 1101 (1973) 7. L. A. Yanovskaya, Tetrahedron 29, 43221 (1973) 8. Л .А. Яновская, Усп. хим. 1646 (1976) 9. M. K. Bachlaus, Int. J. Pa. Phys. 14, 234 (1976) 10. L. Krasnec, Coll. Czechosl. Chem. Commun. 41, 2696 (1976) 11. Е. Гудриниеце, Строение и таутомерн. превращения бета-дикарбонил. соединений, Рига 1977: с. 91-101; табл. 110 - 113. 12. J. P. Poupelin, Eur. J. Med. Chem. 14, 171 (1979) 13. J. Ploquin, J. Heterocycl. Chem. 17, 961 (1980) 14. J. Courant, Eur. J. Med. Chem. 24, 145 (1989) 15. S. Minchev, Z. Naturforsch. B 45, 543 (1990) 16. A. Michalchuk, Al. Verenich, O. V. Gulyakevich, DAN SSSR 323, 82 (1992) 17. A. S. Batsanov, M. R. Bryce, S. R. Davies, J. Chem. Soc. Perkin II, 313-319 (1993) A Theoretical Study of the Active Site of Orotidine-5'-phosphate Pyrophosphorylase: J. Kaneti, E. Golovinsky, I. Yuchnovski, D. Genchev, J. Theoretical Biology 26, 19-

27 (1970) 1. A. W. Burges, Search 3, 74 (1972) 2. R. Gaspar, Acta Biochim. Helv. 7, 275 (1972) 3. J. Victor, J. Biol. Chem. 254, 2647 (1979) 4. G. J. Krauss, Biomed. Bioc. 42, 1045 (1983)

Page 2: List of citations from the Web of Science, Scopus and PoP.exe

2

Analogues of Orotic Acid in the Reaction with Phosphoribosyl Pyrophosphate: E.

Golovinsky, J. Kaneti, I. Yuchnovski, D. Genchev, J. Theoretical Biology 26, 29-32

(1970) 1. G. J. Krauss, Biomed. Bioc. 42, 1045 (1983)

(H) Quantitative relationships between the electronic structure and biological

activity of some analogues of orotic acid: Kaneti J.J., Golovinsky E.V. Chemico-

Biological Interactions, 1971, 3 (6), pp. 421-428 1. R. Franke, OEHME P, Farmazie 28, 489 (1973) 2. J. P. Green, JOHNSON CL, KANG S, Ann. Rev. Pharm. R. 14, 319 (1974) 3. D. Kessel, COFFEY B, DEACON J, et al. Mol. Pharmacol. 8, 731 (1972) 4. G. S. Pandey, PANDEY GS, NIGAM PC, AGARWALA U, J. Inorg. Nucl. Chem. 39, 1877 (1977) 5. G. S. Pandey, NIGAM PC, AGARWALA U, Indian J. Chem. 17A, 74 (1979) 6. G. J. Krauss, Biomed. Bioc. 42, 1045 (1983) 7. E. Wyrzykiewicz, G. Bartkowiak, Polish J. Chem. 69, 566-578 (1995) 8. I. Bach, KUMBERGER O, SCHMIDBAUR H, Chem. Ber. 123 (1990), 2267 9. O. Kumberger, RIEDE J, SCHMIDBAUR H, Chem. Ber./Recueil 124 (1991), 2739 10. D. J. Darensbourg, Larkins DL, Reibenspies JH, Inorg. Chem. 37, 6125 (1998) 11. S. Lencioni, , Pellerito A, Fiore T, et al. APPLIED ORGANOMETALLIC

CHEMISTRY 1999, Vol 13, Iss 3, pp 145-157 12. Falvelio LR, Ferrer D, Soler T, et al. ACTA CRYSTALLOGR C 2003, 59: M149-M151 Part 4 (16 citation in the Web of Science) (37)

(H) Juchnovski, I., Kaneti, J., Electronic structure of rotational isomers of furfural: Tetrahedron 27, 4269 (1971)

1. J. M. Angelelli, Tetrahedron 28, 2037 (1972) 2. A. Krantz, J. Am. Chem. Soc. 94, 4022 (1972) 3. J. Fabian, Z. Chem. 13, 116 (1973) 4. A. Perjessy, Tetrahedron 29, 3189 (1973) 5. A. B. Sannigrahi, Indian J. Chem. 11, 902 (1973) 6. O. A. Осипов, Ж. Общ. Хим. 44, 393 (1974) 7. В. Н. Шейнкер, Ж. Общ. хим. 44, 175 (1974) 8. В. В. Зверев, Ж. Орг. хим. 10, 417 (1974) 9. C. L. Chang, J. Chem. Soc. Perkin II, 744 (1975) 10. A. Perjessy, Tetrahedron 31, 2936 (1975) 11. Y. Yokoyama, Nippon Kag. Kaishi, 72 (1977) 12. В. Н. Шейнкер, Ж. Орг. Хим. 13, 2416 (1977)

Page 3: List of citations from the Web of Science, Scopus and PoP.exe

3

13. В. Н. Шейнкер, Усп. хим. 50, 632 (1981) 14. R. Abueita, Int. J. Quant. Chem. 19, 383 (1981) 15. F. M. Dean, Adv. Heterocycl. Chem. 31, 237 (1982) 16. P. W. Boykin, J. Heterocycl. Chem. 25, 643 (1988) 17. L. A. Montero, R. Gonzalez-Jonte, L. A. Diaz, J. Phys. Chem. 98, 5607-5613

(1994) 18. Ortiz PJ, Evleth EM, Montero LA, THEOCHEM-J MOL STRUC 432 (2): 121-

127 MAY 25 1998 19. Alvarez-Ibarra C, Quiroga-Feijoo ML, Toledano E, J CHEM SOC PERK T 2 (3):

679-689 MAR 1998 20. KLAPSTEIN D, MACPHERSON CD, OBRIEN RT, CAN J CHEM 68 (5): 747-

754 MAY 1990 21. ABUEITTAH RH, HAMMED MM, B CHEM SOC JPN 57 (3): 844-851 1984

1. (41) (58)

The Dependence of Some Characteristic IR frequencies of 2-Arylmethylene-1,3-indandiones on Their Electronic Structure. Steric Effects and Carbonyl Coupling: I.

Juchnovski, J. Kaneti, Известия на Отд. за хим. науки 6, 615 - 623 (1973) 1. L. Krasnec, Coll. Chechosl. Chem. Commun. 41, 2696 (1976) 2. L. Krasnec, Coll. Czechosl. Chem. Commun. 45, 1589 (1980) 3. S. Minchev, Zeitschr. Naturforsch. B 45, 543 (1990) J. Kaneti, A molecular orbital study of the reaction catalysed by the enzyme adenosine kinase

and its active site, J. Theoretical Biology 38, 169 (1973) 1. J. W. Delong, Biochim. Biophys. Acta 320, 388 (1973) 2. Z. Simon, Studia Biophys. 51, 49 (1973) 3. Z. Simon, Studia Biophys. 39, 123 (1973) 4. Z. Simon, Angew. Chem. 86, 802 (1974) 5. J. P. Green, Ann. Rev. Pharm. R. 14, 319 (1974) 6. D. L. Miles, J. Theoret. Biol. 67, 499 (1979) 7. J. Motoc, Studia Biophys. 66, 79 (1977) 8. J. H. Fox, Ann. Rev. Biochem. 47, 655 (1978) 9. D. L. Miles, Biochim. Biophys. Acta 518, 17 (1978) 10. D. L. Miles, Int. J. Quant. Chem. Suppl. 173 (1978) 11. R. L. Miller, J. Biol. Chem. 254, 2339 (1979) (72)

(H) Infrared-spectra and structure of carbanions .13. Study of carbanions generated from acetonitrile, acetonitrile-D-3 and acetonitrile-N-15 : Juchnovski, I.N., Dimitrova,

J.S., Binev, I.G., Kaneti, J. Tetrahedron 1978, 34, 779-783 1. E. W. Kaiser, J. Organomet. Chem. 183, 1 (1979) 2. A. Loupy, Nouv. J. Chim. 4, 121 (1980)

Page 4: List of citations from the Web of Science, Scopus and PoP.exe

4

3. J. L. Wardell, in The Alkali and Coinage Metals in Organometallic Chemistry, Eds. E. W. Abel, F. G. A. Stone, The Royal Society of Chemistry, London, 1980, vol. 8. 4. E. Buncel, T. Durst, Comprehensive Carbanion Chemistry, Elsevier, 1980, vol. 5A, pp. 172 - 175. 5. B. C. Menon, J. Mol. Structure 78, 29 (1982) 6. S. Moran, J. Am. Chem. Soc. 109, 5996 (1987) 7. A. Dobrev, Bull. Soc. Chim. France 1084 (1987) 8. V. R. Verneker, Polymer Comm. 30, 92 (1989) 9. C. Binet, A. Jadi, J. C. Lavalley, J. Chim. Phys. Phys.-Chim.Biol. 89, 31-45 (1992) 10. T. Kaufmann, H. Kieper, H. Pieper, Chem. Ber. 125, 899-905 (1992) 11. T. Kaufmann, J. Jordan, K. U. Voss, H. W. Wilde, Chem. Ber. 126, 2083-2091 (1993) 12. A. Abbotto, S. Bradamante, G. A. Pagani, J. Org. Chem. 58, 449-455 (1993) 13. G. Ramis, G. Busca, V. Lorenzelli, J. Chem. Soc. Faraday 90, 1293-1299 (1994) 14. T. Kaufmann, H. Nienaber, D. Stach, Inorg. Chim. Acta. 220, 85092 (1994) 15. J. Ho, J. C. Fishbein, J. Am. Chem. Soc. 116, 6611-6621 (1994) 16. J. C. Lavalley, Catalysis Today 27, 377 (1996) 17. I. F. Tupitsin, N. M. Zatsepina, V. Z. Faufman, Zh. Obsch. Khim. 65, 1500 (1995) 18. H. J. Heeres, Angew. Chem. Int. Ed. Engl. 29, 420 (1990) 19. G. Raabe, Zeitschr. Naturforsch. 1991 A, 46, 275 20. T. Kauffmann, Chem. Ber. 1992, 125, 899. 21. V. Antony, J. Label, C. r. 1984, 21, 375. 22. A. Abboto, J. Org. Chem. 1993, 58, 449. 23. T. Kauffmann, Chem. Ber. 1993, 126, 2083. 24. T. Kauffmann, Inorg. Chim. Acta 1994, 220, 85. 25. G. Ramis, J. Chem. Soc. Faraday Trans. 1994, 90, 1293. 26. F. Tupitsyn, Zh. Obs. Khim. 1995, 65, 446. 27. A. Abolaut, J. Chem. Soc. Faraday Trans. 1995, 91, 2913. 28. I. F. Tupitsyn, Zh. Obs. Khim. 1995, 65, 1500. 29. H. J. Heeres, Angew. Chem. 1996, 24, 420. 30. J. C. Lavalley, Catal. Today 1996, 27, 377. 31. Platero EE, Mentruit MP, Morterra C, LANGMUIR 15 (15): 5079-5087 JUL 20 1999 32. Georgieva MK, Velcheva EA: INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY 106 (6): 1316-1322 MAY 2006 33. Ruthenated acetonitrile: Unusual Bronsted acidity of a polar "Aprotic" solvent Author(s): Derrah EJ, Giesbrecht KE, McDonald R, et al.: ORGANOMETALLICS Volume: 27 Issue: 19 Pages: 5025-5032 Published: OCT 13 2008 (105)

STRUCTURAL EFFECTS ON NITRILE INFRARED INTEGRATED-INTENSITIES OF ALPHA,BETA-DIARYL CYANOETHYLENES - HAMMETT

AND QUANTUM CHEMICAL APPROACHES: JUCHNOVSKI, I; KUZMANOVA, R; TSENOV, J; KANETI, J; BINEV, I: Z. Naturforsch. 33B, 557 –

563 (1978)

Page 5: List of citations from the Web of Science, Scopus and PoP.exe

5

1. M. Siegmund, W. Wegener, KD Schleinitz, J. Prakt. Chem. 322, 457 (1980) 2. J. Catel, Y. Mollier, Bull. Soc. Chim. France 113 (1981) 3. J. Velek, Coll. Czechosl. Chem. Commun. 46, 873 (1981) 4. G. Butt. Spectrochim. Acta A38, 301 (1981) 5. К. Кампар, Ж. Общ. хим. 51, 2331 (1981) 6. А. Г. Малкина, Ж. Орг. хим. 17, 2439 (1981) (111) Infrared Study of Aromatic Nitrile Anion Radicals: I. Juchnovski, I. Binev, J. Kaneti,

Известия по химия 10, 554 (1977) 1. Л. Казицина, ДАН СССР 249, 390 (1979) 2. D. Cowley, Radical reactions, in Organic Reaction Mechanisms, Specialist

Periodical Reports, 1981. 3. И. И. Билкис, Ж. Орг. Хим. 23, 2062 (1987) 4. J. S. Buckleto, J. Mol. Structure 189, 319 (1988) 5. Simeon Stoyanov, J. Phys. Chem. A, Vol. 114, No. 15, 2010, 5150-5161.

Mol. Cryst. Liq. Cryst. Letters 41, 177-181 (1978) 1. Krekhov, A. P., O. A. Scaldin,A. N. Chuvyrov, Mol. Cryst. Liq. Cryst. 212, 245-254 (1992)

Structure Activity Relationships for Herbicidal N1-Aryl-N2-alkyl Thioureas: R. Franke, E. Karanov, J. Kaneti, Compt. rend. Acad. bulgare sci. 31, 1051

(1978) 1. M. Soskic, A. Sabljic, Pestic. Sci. 1993, 39, 245 2. SCHELENZ T, KRAMER CR, QUANTITATIVE STRUCTURE-ACTIVITY RELATIONS FOR THE INHIBITION OF THE AUTOTROPHIC GROWTH OF SYNCHRONOUS CHLORELLA-VULGARIS CULTURES BY SUBSTITUTED THIOUREAS, BIOCHEMIE UND PHYSIOLOGIE DER PFLANZEN 180 (5): 353-369 1985 (119)

Abh. Akad. Wiss. Deutsch.

Med. Natur. 195 (1978) 1. J. Kuthan, Ind. Eng. Prod. 21, 191 (1982) (120)

Page 6: List of citations from the Web of Science, Scopus and PoP.exe

6

Spectroscopic and Theoretical Studies of Arylmethylene Malononitriles. 1. Electronic Spectra: J. Kaneti, D. M. Vitanov, I. Juchnovski, V. Juritsin, Известия по химия 11,

273 (1978) 1. R. Bugueno-Hoffmann, Spectr. Acta A 44, 33 (1988) 2. R. Bugueno-Hoffmann, Spectr. Acta A 45, 1227 (1989) 3. 4. H. Moustafa, Ber. Bunsen Ges. 98, 1015 (1994) (124) Semiempirical Calculations of Force Fields for Molecules Containing Carbon - Nitrogen Bonds: I. Juchnovski, J. Dimitrova, J. Kaneti, Известия по химия 12, 97 (1979) 1. П. П. Шоригин, Усп. химии 50, 1345 (1981) 2. C. W. Bock, Chem. Physics 68, 143 (1982) (126) Spectroscopic and Theoretical Studies of Arylmethylene Malonodinitriles. 2. Frequencies and Intensities of the Nitrile Groups: I. Binev, D. M. Vitanov, I. Juchnovski, J. Kaneti, Известия по химия 12, 162 (1979) 1. J. Catel, Bull. Soc. Chim. France 113 (1981) 2. R. Bugueno-Hoffmann, Spectr. Acta A 45, 1227 (1989) Perturbation Calculations of Long Range Interaction Energies of Doublet with Singlet Ground State Electronic Systems. 1. The CNDO Approximation: J. Kaneti, Известия по химия 12, 416 (1979) 1. R. S. Asatryan, Org. Reactiv. 25, 3 (1988) Infrared Spectra and Structure of Carbanions. 19. Anions Containing Ester, Amide, and Carboxylate Groups: I. Juchnovski, A. Fattah Nazir, M. Sahatchieva, J. Kaneti, I. Binev, Известия по химия 13, 269 (1980) 1. T. Kolev, Spectr. Acta A 54, 1083 (1998)

(130)

A Semiempirical Study of Carbanions of Cyanoacetic Acid Derivatives: J. Kaneti, A. Fattah Nazir, I. Binev, V. Radomirska, I. Juchnovski,

J. Mol. Structure THEOCHEM 68, 11-18 (1980) 1. G. Boche, Angew. Chem. 28, 277 (1989)

Page 7: List of citations from the Web of Science, Scopus and PoP.exe

7

2. Andreev GN, Petrov J, Ognyanova V, Infrared spectral study on the reaction mechanism of N-substituted trichloroacetamides in alkaline medium, SPECTROSCOPY LETTERS 30 (4): 717-726, 1997 3. Simeon Stoyanov, J. Phys. Chem. A, Vol. 114, No. 15, 2010, 5150-5161. (133) Conformation of Stereoisomeric Benzilphenylozazones: J. Kaneti, N. I. Christova, A. V. Spassov, Доклади БАН 33, 631 (1981) 1. В. В. Бузикин, Изв. АН СССР, сер. хим. 32, 1439 (1983)

Cytokinin Activity of some N-Arylureas - Quantitative Structure Activity Relationships: R. Franke, E. Karanov, J. Kaneti, A. Gruska, Compt. rend.

Acad. Bulgare sci. 34, 97-100 (1981) 1. R. N. Henrie II, C. M. Green, W. H. Yeager, T. F. Ball III, J. Agricult. Food Chem. 36, 626 (1988) (135)

(H) Determination of Constants of Anionic Substituents Based on Nitrile Infrared Frequencies and Intensities: BINEV IG, KUZMANOVA RB, KANETI J,

JUCHNOVSKI IN: J. Chem. Soc. Perkin II 1533-1536 (1982) 1. S. Mariott, J. Org. Chem. 50, 741 (1985) 2. Г. В. Рутковский, Ж. Орг. хим. 21, 2217 (1985) 3. I. Suzuki, J. Mol. Struct. 132, 1 (1987) 4. R. Anulewicz, Z. Natiurforsch. 42B, 917 (1987) 5. T. M. Krygowski, J. Chem. Res. 120 (1987) 6. H. Li, Environ. Sci. Technol. 34 (2000), 3674-3680 7. Andreev GN, Argirov OK, Ognyanova V, J MOL STRUCT 598 (1): 27-35 Sp.

Iss. SI OCT 31 2001 8. Binev YI, J MOL STRUC-THEOCHEM 535: 93-101 JAN 15 2001 9. Velcheva EA, Binev YI, Petrova MJ, J MOL STRUCT 475 (1): 65-72 JAN 19

1999 10. Ognyanova V, Petrov J, Andreev GN, SPECTROSC LETT 30 (5): 933-942 1997 11. Albert K, Hafelinger G, Milart P, et al., Z NATURFORSCH B 52 (2): 263-280

FEB 1997 12. KRYGOWSKI TM, KALINOWSKI MK, TUROWSKATYRK I, et al.,

STRUCT CHEM 2 (1): 71-80 JAN 1991 13. HANSCH C, LEO A, TAFT RW, CHEM REV 91 (2): 165-195 MAR-APR 1991 14. KRYGOWSKI TM, TUROWSKATYRK, COLLECT CZECH CHEM C 55 (1):

165-179 JAN 1990 15. DELAMARE PBD, NEWMAN PA, J CHEM SOC PERK T 2 (11): 1797-1802

1984

Page 8: List of citations from the Web of Science, Scopus and PoP.exe

8

16. AZZARO M, GAL JF, GERIBALDI S, J CHEM SOC PERK T 2 (4): 771-774 1984

17. Binev YI, Georgieva MK, Daskalova LI, SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY 60 (11): 2601-2610 SEP 2004

18. Crompton EM, Lewis FD, PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES 2004, 3 (7): 660-668

19. Georgieva MK, Velcheva EA: INTERNATIONAL JOURNAL OF QUANTUM CHEMISTRY 106 (6): 1316-1322 MAY 2006

20. Two-photon absorption and the design of two-photon dyes: Pawlicki, M., Collins, H.A., Denning, R.G., Anderson, H.L. Angewandte Chemie -

International Edition 2009, 48 (18), pp. 3244-3266 21. Electrophilic substituent constant σ+ of electron donor substituents in nonpolar

media: Oehlke A, Auer AA, Schreiter K, Hofmann K (Hofmann, Katja), Riedel F (Riedel, Franziska), Spange S (Spange, Stefan): JOURNAL OF ORGANIC CHEMISTRY 2009, 74(9), 3316-3322

22. Simeon Stoyanov, J. Phys. Chem. A, Vol. 114, No. 15, 2010, 5150-5161. 23. Cheshmedzhieva D, Ilieva S, Galabov B, Computational evaluation of sigma(I)

and sigma(R) substituent constants, JOURNAL OF MOLECULAR STRUCTURE 2010, 976(1-3, SI), 427-430.

24. Lin, MJ (Lin, Mei-Jin); Fimmel, B (Fimmel, Benjamin); Radacki, K (Radacki, Krzysztof); Wurthner, F (Wuerthner, Frank), Halochromic Phenolate Perylene Bisimides with Unprecedented NIR Spectroscopic Properties: Angewandte

Chemie-International Edition Volume: 50 Issue: 46 Pages: 10847-10850 DOI: 10.1002/anie.201105129 Published: 2011

25. Understanding the interplay of weak forces in [3,3]-sigmatropic rearrangement for stereospecific synthesis of diamines: So, S.M., Mui, L., Kim, H., Chin, J. Accounts of Chemical Research 2012, 45 (8) , pp. 1345-1355; DOI:

10.1021/ar2002842 (160)

KANETI J, NGUYEN MT, THEORETICAL-STUDY OF KETENIMINE - GEOMETRY, ELECTRONIC-PROPERTIES, FORCE-CONSTANTS AND

BARRIERS TO INVERSION AND ROTATION: J. Mol. Structure (THEOCHEM) 87, 205 (1982)

1. L. Lohr, J. Am. Chem. Soc. 105, 5541 (1983) 2. M. Rodler, Ronald D. Brown, Peter D. Godfrey, Leslie M. Tack Chem. Phys.

Lett. 110, 447 (1984); http://dx.doi.org/10.1016/0009-2614(84)87068-2 1. E.-U. Wuertwein, J. Org. Chem. 49, 2971 (1984) 2. А. Леонов, Ж. Общ. хим. 55, 32 (1985-1) 3. E. Sonveaux, Bull. Soc. Chim. Belg. 94, 831 (1985) 4. Y. Amatatsu, J. Mol. Spectry. 123, 476 (1987) 5. C. Guimon, Chem. Phys. 138, 157 (1989) 6. H. W. Kroto, J. Am. Chem. Soc. 112, 3779 (1990) 7. G. V. Shustov, A. V. Kachanov, S. N. Denisenko, Bull. Russ. Acad. Sci.-Div.

Chem. 41, 2028-2033 (1992) 8. R. D. Brown, Chem. Phys. 99, 347 (1985) 1. A15. M. T. Nguyen, J. Chem. Soc. Perkin 2 1999 (1985) 9. A. F. Hegarty, J. Chem. Soc. Perkin 2 1175 (1997)

Page 9: List of citations from the Web of Science, Scopus and PoP.exe

9

10. K. S. Sung, JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2 1999, Iss 6, pp 1169-1173

11. D. Tahmassebi, Magn. Res. Chem. 2003, 41, 273. 12. Ito, F., Nakanaga, T. Observation of the high-resolution spectrum of the N-H

bending vibration of ketenimine CH2CNH: Journal of Molecular Spectroscopy 2010, 264 (2), pp. 100-104

13. Mansour H. Almatarneh Lina Barhoumi, Ban Al-Tayyem, Abd Al-Aziz A. Abu-Saleh, Marwa M. AL-A’qarbeh, Faten Abuorabi, Ehab AlShamaileh, Mohammednoor Altarawneh, Ali Marashdeh, Computational study for the second-stage cracking of the pyrolysis of ethylamine: Decomposition of methanimine, ethenamine, and ethanimine, Computational and Theoretical

Chemistry, Volume 1075, 1 January 2016, Pages 9–17, doi:10.1016/j.comptc.2015.10.032

(173) On The Mechanism of the alpha-Alkynone Cyclization: a Theoretical Study: Kaneti, J.; Karpf, M.; Dreiding, A. S.: Helv. Chim. Acta 65, 2517 (1982)

1. P. Russegger, Chem. Phys. 86, 31 (1984) 2. M. Koller, Helv. Chim. Acta 66, 2760 (1983) 3. M. Koller, Helv. Chim. Acta 69, 560 (1986) 4. M. T. Nguyen, J. Chem. Soc. Perkin II, 55 (1987) 5. B. Ondruschka, REMMLER M, ZIMMERMANN G, KRUGER C: J. Prakt. Chem. 329, 49 (1987) 6. R. F. C. Brown, Rec. Trav. Chim. 107, 655 (1988) 7. F. Bertha, J. Fetter, K. Lempert, Kajtar-Peredy M, Czira G, Koltai E: TETRAHEDRON 57 (2001), 8889 8. G. Zimmermann, EUROPEAN JOURNAL OF ORGANIC CHEMISTRY 2001(3), 457 9. K. Schulz, J. Hofmann, G. Zimmermann, Eur. J. Org. Chem. 1999 (12), 3407 10. Greenman, L.; Mazziotti, D. A. J. Phys. Chem. A 2010, 114, 583-588; DOI: 10.1021/jp907890d (183) CONFORMATIONAL-ANALYSIS OF CYTOKININS AND ANALOGS : J. Kaneti, E. Karanov, Chem.-Biol. Interactions 43, 73-85 (1983)

1. S. Nishikawa, Agr. Biol. Chem. 50, 1089 (1986) 2. D. Kumberger, Chem. Ber. 124, 2739 (1991) 3. S. Nishikawa, J. Agric. Food Chem. 48 (2000), 5302 (186)

Page 10: List of citations from the Web of Science, Scopus and PoP.exe

10

(H) NGUYEN MT, KANETI J, HOESCH L, DREIDING A: Triaziridines. Part III. Triaziridine, azimine, and triazene: A SCF study of the

energy and structure of N3H3-isomers, Helv. Chim. Acta 67, 1918-1929 (1984)

1. H. Hilpert, Helv. Chim. Acta 69, 136 (1986) 2. G. Kaupp, J. Phys. Org. Chem. 1, 287 (1988) 3. R. Gleiter, Tetrahedron Lett. 29, 185 (1988) 4. H. Hilpert, Helv. Chim. Acta 71, 277 (1988) 5. D. H. Magers, J. Am. Chem. Soc. 110, 3435 (1988) 6. A. Schmiedekamp, J. Org. Chem. 53, 3433 (1988) 7. S. Inagaki, J. Am. Chem. Soc. 109, 3234 (1987) 8. W. Kaim, Rev. Chem. Interm. 8, 247 (1987) 9. A. Y. Shibaev, J. Struc. Chem. 27, 472 (1986) 10. A. A. Suvorov, Usp. Khim. 56, 1324 (1987) 11. H. Hilpert, Helv. Chim. Acta 68, 1691 (1985) 12. M. T. Nguyen, Polyhedron 4, 1721 (1985) 13. W. Von Philipsborn, Angew. Chem. 25, 383 (1986) 14. Wu HS, Xu XH, Jiao HJ: CHEMICAL PHYSICS LETTERS 412 (4-6): 299-

302 SEP 5 2005 15. P. Politzer, J. S. Murray, J. M. Seminario, Theochem 94, 155-170 (1992) 16. S. Inagaki, J. Am. Chem. Soc. 116, 5954 (1994) 17. K. Yamaguchi, Acta Cryst. C 46, No. Pt5, 821 (1990) 18. W. Marterer, Chem. Ber. 124, 609 (1991) 19. J. L. Ozment, J. Am. Chem. Soc. 113, 397 (1991) 20. B. D. Wladkowski, J. Am. Chem. Soc. 113, 7893 (1991) 21. T. Kaihoh, J. Chem. Soc. Perkin I 1991, 2045 22. P. Politzer, THEOCHEM 94, 155 (1992) 23. J. Ho, J. Am. Chem. Soc. 116, 6611 (1994) 24. B. Y. Simkin, Adv. Heterocycl. Chem. 56, 303 (1993) 25. M. E. Grice, THEOCHEM 358, 63 (1995) 26. E. A. Salter, Hinrichs, R. Z., Salter, S. J. Am. Chem. Soc. 118, 227 (1996) 27. M. N. Glukhovtsev, Int. J. Quant. Chem. 62, 373 (1997) 28. I. N. Kanev, V. S. Monev, Bulg. Chem. Commun. 29, 674-682 (1996-7) 29. C. C. Pye, Vaughan K, Glister JF: Can. J. Chem. 80 (2002), 447 30. GLEITER R, SIGWART C, IRNGARTINGER H, et al. TETRAHEDRON

LETT 29 (2): 185-188 1988 31. Karahodza A, Knaus KJ, Ball DW, Cyclic triamines as potential high energy

materials. Thermochemical properties of triaziridine and triazirine, JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM 732 (1-3): 47-53 NOV 1 2005

32. Wu HS, Xu XH, Jiao HJ, Structure and stability of perazido substituted azacycloalkanes, N-n(N3)(n), CHEMICAL PHYSICS LETTERS 412 (4-6): 299-302 SEP 5, 2005

33. Song HJ, Xiao HM, Dong HS, et al. JOURNAL OF PHYSICAL CHEMISTRY A 110 (6): 2225-2230 FEB 16 2006

34. Song HJ, Xiao HM, Dong HS, Theoretical study of properties of H bonds and intermolecular interactions in linear cis-,trans-cyclotriazane clusters (n=2-8): JOURNAL OF CHEMICAL PHYSICS 124 (7): Art. No. 074317 FEB 21 2006

Page 11: List of citations from the Web of Science, Scopus and PoP.exe

11

35. Song HJ, Xiao HM, Dong HS, Cooperative effects, strengths of hydrogen bonds, and intermolecular interactions in circular cis, trans-cyclotriazane clusters (n=3-8) : JOURNAL OF CHEMICAL PHYSICS 125 (7): Art. No. 074308 AUG 21 2006

36. Song HJ, Xiao HM, Dong HS, et al.:Intermolecular interactions and nature of cooperative effects in linear cis,cis-cyclotriazane clusters (n=2-8) : JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM 767 (1-3): 67-73 AUG 24 2006

37. Peverati R, Siegel JS, Baldridge KK, PHYSICAL CHEMISTRY CHEMICAL

PHYSICS 2009, 11, 2387-2395. 38. Hu AG, Zhang F, A hydronitrogen solid: high pressure ab initio evolutionary

structure searches: JOURNAL OF PHYSICS-CONDENSED MATTER 2011, 23(2), Art. 022203

39. Chi, Weijie; Li, Butong; Wu, Haishun, Density function theory study on

energetic nitro-triaziridine derivatives, STRUCTURAL Chemistry, 2013, 24(2), 375-381; DOI: 10.1007/s11224-012-0083-2.

40. Forstel, Marko; Tsegaw, Yetsedaw A.; Maksyutenko, Pavlo; Mebel, Alexander M.; Sander, Wolfram; Kaiser, Ralf I.; On the Formation of N3H3 Isomers in Irradiated Ammonia Bearing Ices: Triazene (H2NNNH) or Triimide (HNHNNH), CHEMPHYSCHEM 2016, 17, 2726-2735, DOI: 10.1002/cphc.201600414

(226)

(H) The Structures of Lithium and Magnesium Derivatives of Acetic Acid "Dianions": KANETI J, SCHLEYER PV, KOS AJ, J. Chem. Soc. Chem.

Commun. 1985, 1014 1. D. R. Armstrong, Chem. Commun. 1672 (1986) 2. A. Bongini, J. Chem. Soc. Chem. Commun. 50 (1986) 3. P. Ballester, J. Chem. Soc. Perkin I 2797 (1988) 4. S. Gronert, J. Am. Chem. Soc. 110, 4418 (1988) 5. M. Bellasoued, Bull. Soc. Chim. Belg. 97, 263 (1988) 6. P. Hubberstey, Coord. Chem. Rev. 85, 1 (1988) 7. P. Hubberstey, Coord. Chem. Rev. 85, 86 (1988) 8. A. Raica, J. Am. Chem. Soc. 110, 871 (1988) 9. M. Bellasoued, Tetrahedron Letters 31, 209 (1990) 10. L. R. Domingo, S. Gil, R. Mestres, Tetrahedron 51, 7207-7214 (1995) 11. L. R. Domingo, S. Gil, R. Mestres, M. T. Pilcher, Tetrahedron 52, 11105-11112

(1996) 12. O. Niyomura, Kato S, Kanda T: Inorg. Chem. 38, 507 (1999) 13. G. Sini, Bellassoued M, Brodie N: TETRAHEDRON 2000, Vol 56, Iss 9, pp

1207-1215 14. Meyer MM, Khairallah GN, Kass SR, O'Hair RAJ: Gas-Phase Synthesis and

Reactivity of the Lithium Acetate Enolate Anion, -CH2CO2Li : ANGEWANDTE CHEMIE-INTERNATIONAL EDITION 2009, 48(16), 2934-2936

15. Braun M, Meletis P, Schrader W, Evidence for a Non-Concerted, Dissoziative Mechanism of the Palladium-Catalyzed "Enolate Claisen Rearrangement" of

Page 12: List of citations from the Web of Science, Scopus and PoP.exe

12

Allylic Esters, EUROPEAN JOURNAL OF ORGANIC CHEMISTRY 2010, 28, 5369-5372.

16. Braun Manfred; Meletis Panos; Visse Robin, Palladium-Catalyzed Allylic Alkylation of Doubly Deprotonated Carboxylic Acids: ADVANCED SYNTHESIS & CATALYSIS, 2011, 353(18), 3380-3384, DOI: 10.1002/adsc.201100372

17. Kiyooka, Syun-ichi; Kaneno, Daisuke; Fujiyama, Ryoji, Intrinsic reactivity index

as a single scale directed toward both electrophilicity and nucleophilicity using

frontier molecular orbitals, Tetrahedron 2013, 69(21), 4247-4258; DOI: 10.1016/j.tet.2013.03.083

(243)

TRIAZIRIDINES .5. A SEMIEMPIRICAL MNDO STUDY OF NITROGEN INVERSION AND AMIDE ROTATION IN FORMYLTRIAZIRIDINES: J. Kaneti,

L. Hoesch, A. S. Dreiding, Helv. Chim. Acta 69, 1461-1468 (1986) 1. H. Hilpert, Helv. Chim. Acta 70, 381 (1987) 2. S. N. Denisenko, Angew. Chem. 28, 1381 (1989) 3. W. B. Jennings, J. Chem. Soc. Chem. Commun. 1078 (1992) 4. K. V. Madappat, M. Clark, J. S. Trasher, J. Mol. Str. Theochem 104, 1-15 (1993) 5. M. E. Grice, P. Politzer, J. Mol. Str. Theochem 358, 63-69 (1995) 6. H. Hilpert, Helv. Chim. Acta 69, 2087 (1986) 7. P. Politzer, Grice, ME; Seminario, JM, Int. J. Quant. Chem. 61, 389 (1997) 8. A. D. Headley, J. Nam, J MOL STRUC-THEOCHEM 589 (2002), 423-429; DOI: 10.1016/S0166-1280(02)00301-9 (251)

Structure and Relative Stability of Si2H4 Isomers. Correlated Nonempirical MO Calculations (in Russian): A. S. Ziubin, A. A. Tikiljainen, J. Kaneti, O. P. Charkin,

ZHURNAL NEORGANICHESKOI KHIMII 31 (10): 2495-2499 OCT 1986 1. Lammertsma K, Ohwada T, J AM CHEM SOC 118 (31): 7247-7254 AUG 7 1996 (252)

(H) Structures and Energies of the Lithium, Sodium, and Magnesium Derivatives of the Anions CH2CN- and CH2NC-. Solvation and Aggregation of the Lithium Species:

KANETI J, SCHLEYER PV, CLARK T, KOS AJ, SPITZNAGEL GW, ANDRADE JG, MOFFAT JB J. Am. Chem. Soc. 108, 1481 (1986)

1. C. Schade, Angew. Chem. 25, 902 (1986) 2. H. J. Gais, Angew. Chem. 25, 938 (1986)

Page 13: List of citations from the Web of Science, Scopus and PoP.exe

13

3. M. L. McKee, J. Am. Chem. Soc. 109, 559 (1987) 4. A. Rajca, A. Streitwieser, J. Am. Chem. Soc. 109, 1790 (1987) 5. S. Moran, J. Am. Chem. Soc. 109, 5996 (1987) 6. D. Barr, J. Chem. Soc. Dalton 2141 (1987) 7. J. Filley, J. Am. Chem. Soc. 109, 5992 (1987) 8. N. Kallman, J. Am. Chem. Soc. 109, 7466 (1987) 9. M. Meier, J. Org. Chem. 52, 648 (1987) 10. Moran, S.; Ellis, H. B.; DeFrees, D. J.; McLean, A. D.; Ellison, G. B. J. Am.

Chem. Soc. 1987, 109, 5996. 11. Moran, S.; Ellis, H. B.; DeFrees, D. J.; McLean, A. D.; Paulson, S.

E.Ellison,G. B. J. Am. Chem. Soc. 1987, 109, 6004. 12. J. P. Ritchie, J. Am. Chem. Soc. 109, 5909 (1987) 13. B. M. Trost, J. Am. Chem. Soc. 109, 613 (1987) 14. G. Boche, J. Am. Chem. Soc. 110, 6925 (1988) 15. J. S. Depue, J. Am. Chem. Soc. 110, 5518 (1988) 16. W. N. Setzer, Tetrahedron 44, 3339 (1988) 17. B. M. Trost, J. Org. Chem. 53, 2394 (1988) 18. R. Glaser, THEOCHEM 40, 19 (1988) 19. C. Schade, Adv. Organometal. Chem. 27, 169 (1987) 20. N. Kallman, J. Am. Chem. Soc. 109, 7466 (1987) 21. K. Ohno, THEOCHEM 39, 1 (1987) 22. M. Alcami, J. Phys. Chem. 93, 3929 (1989) 23. S. M. Bachrach, J. Am. Chem. Soc. 111, 3134 (1989) 24. G. Boche, Angew. Chem. 28, 277 (1989) 25. G. Stork, J. Am. Chem. Soc. 110, 8360 (1988) 26. W. L. Jorgensen, J. Am. Chem. Soc. 111, 4190 (1989) 27. W. D. Braschwitz, Angew. Chem. 28, 1348 (1989) 28. Q. Fan, Chem. Phys. Lett. 152, 479 (1989) 29. N. S. Nudelman, J Chem. Soc. Perkin 2, 1989, 931. 30. M. H. Palmer, THEOCHEM 59, 1 (1989) 31. H. J. Heeres, Angew. Chem. 29, 420 (1990) 32. P. Hubberstey, Coord. Chem. Rev. 102, 1 (1990) 33. D. Croisat, J. Seyden-Penne, J. Org. Chem. 57, 6435 (1992) 34. B. Ledig, M. Marsch, K. Harms, G. Boche, Angew. Chem. Int. Ed. 31, 79

(1992) 35. H. E. K. Matimba, Int. J. Mass. Spectr. 114, 85 (1992) 36. M. C. Ramusino, THEOCHEM 86, 473 (1992) 37. J. Seyden-Penne, Nouv. J. Chim. 16, 251 (1992) 38. A. Sygula, J. Am. Chem. Soc. 114, 821 (1992) 39. J. Barker, N. D. R. Barnett, D. Barr, W. Clegg, R. F. Mulvey, Angew, Chem.

Int. Ed. 32, 1366-1368 (1993) 40. M. T. Reetz, S. Hutte, R. Goddard, J. Am. Chem. Soc. 115, 9339-9340 (1993) 41. A. Abbotto, S. Bradamante, G. A. Pagani, J. Org. Chem. 58, 449-455 (1993) 42. A. Mehlorn. B. A. Hess, R. Zahradnik, J. Mol. Str. Theochem 96, 67-80

(1992) 43. P. R. Carlier, B. L. Lucht, D. B. Collum, J. Am. Chem. Soc. 116, 11602-11603

(1994) 44. D. R. Armstrong, F. A. Banbury, I. Cragghine, M. G. Davidson Angew.

Chem. Int. Ed. 32, 1769-1771 (1993) 45. R. A. L. Peerboom, L. J. Dekoning, N. M. M. Nibbering, J. Am. Soc. Mass

Spectrom. 5, 159-168 (1994)

Page 14: List of citations from the Web of Science, Scopus and PoP.exe

14

46. D. J. Nelson, M. K. G. Matthews, J. Organomet. Chem. 469, 1-9 (1994) 47. W. Dong, S. Lacombe, D. Gonbeau, New J. Chem. 18, 629-641 (1994) 48. P. R. Carlier, K. M. Lo, J. Org. Chem. 59, 4053-4055 (1994) 49. G. Raabe, J. Mol. Struc. Theochem 119, 55-72 (1994) 50. M. G. Gardiner, C. L. Raston, Inorg. Chem. 34, 4206-4212 (1995) 51. R. Gertzman, R. Frolich, M. Grehl, Tetrahedron 51, 9031-9044 (1995) 52. W. H. Saunders, J. E. Vanverth, J. Org. Chem. 60, 3452-3458 (1995) 53. R. Getzmann, M. H. Moller, U. Rodewald, Tetrahedron 51, 3767-3786 (1995) 54. A. G. Avent, A. D. Frankland, P. B. Hitchkock, M. F. Lappert, Chem.

Commun. 21, 2433 (1996) 55. R. Koch, B. Wiedel, E. Anders, J. Org. Chem. 61, 2523 (1996) 56. J. P. Snyder, D. P. Spangler, J. R. Behling, J. Org. Chem. 59, 2665-2667

(1994) 57. G. Raabe, Zeitschr. Naturforsch. 1991 A, 46, 275 58. D. R. Armstrong, J. Chem. Soc. Dalton 765 (1991) 59. H. J. Bestmann, Chem Ber. 124 (1991), 199 60. S. Meier, Chem. Ber. 123 (1990), 2339 61. L. G. Gennady, Chem. Phys. Lett. 246, 245 (1995) 62. M. Feigel, Chemistry Eur. J. 2, 9 (1996) 63. A. Ricci, Int. J. Mass Spectr. 164, 121 (1997) 64. D. Enders, Eur. J. Org. Chem. 63 (1998) 65. M. Rosi, THEOCHEM 431, 33 (1998) 66. T. Strzalko, J. Seyden-Penne, J. Org. Chem. 63, 3287 (1998) 67. D. Nelson, Heteroat. Chem. 6, 623 (1998) 68. J. P. Richard, J. Am. Chem. Soc. 121, 715 (1999) 69. Reetz, M.T., Hütte, S., Goddard, R.: Supramolecular Structure of the

Tetrabutylammonium Salt of 2-Phenylpropionitrile, Advanced Synthesis and

Catalysis 1999, 341 (3), pp. 297-301 70. R. Sott, CHEMISTRY-A EUROPEAN JOURNAL 2002, Vol 8, Iss 9, pp

2081-2087 71. D. J. Nelson, Brammer, C.: HETEROATOM CHEMISTRY 2002, Vol 13, Iss

3, pp 263-269 72. F. F. Fleming, JOURNAL OF ORGANIC CHEMISTRY 2002, Vol 67, Iss 9,

pp 2885-2888 73. K. W. Henderson, ORGANOMETALLICS 2002, Vol 21, Iss 4, pp 606-616 74. F. F. Fleming, TETRAHEDRON 2002, Vol 58, Iss 1, pp 1-23 75. P. R. Carlier, JOURNAL OF ORGANIC CHEMISTRY 2002, Vol 67, Iss 11,

pp 3832-3840 76. P. R. Carlier, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY

2000, Vol 122, Iss 51, pp 12819-12823 77. V. Dimitrov, TETRAHEDRON-ASYMMETRY 2000, Vol 11, Iss 7, pp 1513-

1516 78. J. P. Richard, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY

1999, Vol 121, Iss 4, pp 715-726 79. M. Rosi, JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM 1999,

Vol 459, Iss 1-3, pp 47-55 80. M. Rosi, JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM 1999,

Vol 459, Iss 1-3, pp 57-65 81. R. Malassene, Synlett 2002(6), 895-898 82. Henderson KW, Kennedy AR, MacDougall DJ, INORG CHEM 42 (8): 2736-

2741 APR 21 2003

Page 15: List of citations from the Web of Science, Scopus and PoP.exe

15

83. Carlier PR, CHIRALITY 15 (4): 340-347 MAY 5 2003 84. Kang DH, Trenary M, SURF SCI 519 (1-2): 40-56 NOV 1 2002 85. Sott R, Granander J, Hilmersson G, J AM CHEM SOC 126 (21): 6798-6805

JUN 2 2004 86. Isse AA, Gennaro A, J PHYS CHEM A 108 (19): 4180-4186 MAY 13 2004 87. Hampe D, Gunther W, Gorls H, Anders E. EUROPEAN JOURNAL OF

ORGANIC CHEMISTRY 2004 (21):4357-4372 OCT 25 88. Reich HJ, Biddle MM, Edmonston RJ, JOURNAL OF ORGANIC

CHEMISTRY 2005, 70 (9): 3375-3382 APR 29 89. Fleming FF, Gudipati S, Zhang ZY, et al. JOURNAL OF ORGANIC

CHEMISTRY 2005, 70 (10): 3845-3849 MAY 13 90. MacDougall DJ, Kennedy AR, Noll BC, et al. DALTON TRANSACTIONS

2005 (12): 2084-2091 91. Fleming FF, Zhang ZY, Wei GQ, et al. JOURNAL OF ORGANIC

CHEMISTRY 2006, 71 (4): 1430-1435 FEB 17 92. Nicotera I, McLachlan GD, Bennett GD, et al.:Solid-state NMR

characterization of electrolyte breakdown products in nonaqueous asymmetric hybrid supercapacitors, ELECTROCHEMICAL AND SOLID STATE LETTERS 2007, 10 (1): A5-A8

93. Braun L, Liptau P, Kehr G, Ugolotti, J., Fro?hlich, R., Erker, G.: Bis(diphenylphosphino)acetonitrile: Synthesis, ligand properties and application in catalytic carbon-carbon coupling, DALTON TRANSACTIONS 2007 (14): 1409-1415

94. Braun, L., Kehr, G., Blomker, T., Frohlich, R., Erker, G.: Preferred phosphorus ylide formation upon alkylation of lithiobis(diphenylphosphanyl)acetonitrile, European Journal of Inorganic Chemistry 2007 (19), pp. 3083-3090

95. Spielmann, J., Harder, S.: Hydrocarbon-soluble calcium hydride: A "Worker-Bee" in calcium chemistry, Chemistry - A European Journal 2007, 13 (32), pp. 8928-8938

96. Sasaki, M., Kawanishi, E., Shirakawa, Y., Kawahata, M., Masu, H., Yamaguchi, K., Takeda, K. Chirality transfer from epoxide to carbanion: Base-induced alkylation of O-carbamoyl cyanohydrins of β-silyl-α,β-epoxy aldehyde: European Journal of Organic Chemistry 2008, (18), 3061-3064.

97. Khartabil, H.K., Gros, P.C., Fort, Y., Ruiz-López, M.F. , A theoretical study on nBuLi/lithium aminoalkoxide aggregation in hexane and THF: Journal of

Organic Chemistry 2008, 73 (23), pp. 9393-9402. 98. Sasaki M, Shirakawa Y, Kawahata M, Yamaguchi K, Takeda K,

Stereoselective S(E)2 ' Protonation of alpha-Hydroxyallylsilanes Mediated by a Brook Rearrangement : CHEMISTRY-A EUROPEAN JOURNAL 2009, 15, 3363-3366.

99. Schoder, F., Plaia, U., Metzner, R., Sperber, W., Beck, W., Fehlhammer, W.P., [3+2] Cycloadditions of metallo nitrile ylides and metallo nitrile imines with metal carbonyl, thiocarbonyl, and isocyanide complexes: Heterodimetallic systems with bridging heterocycles [1] : Zeitschrift fur

Anorganische und Allgemeine Chemie 2010, 636 (5), pp. 700-709 100. Wells, K.D., Ferguson, M.J., McDonald, R., Cowie, M. Ethylene

substitution in a bis-ethylene complex of Rh/Os and unusual Brønsted-Lowry

basicity of an N-heterocyclic carbine, Organometallics 2011, 30 (4), pp. 815-825

Page 16: List of citations from the Web of Science, Scopus and PoP.exe

16

101. Solvation of metal cations in non-aqueous liquids, Ziegler, M.J., Madura, J.D.: Journal of Solution Chemistry 2011, 40 (8), pp. 1383-1398

102. W. Yang, M.Pazoki, A. I. K. Eriksson, Y. Hao, G. Boschloo, A key discovery at the TiO2 /dye/electrolyte interface: slow local charge compensation and a reversible electric field, Phys.Chem.Chem.Phys.,

2015, 17, 16744, DOI: 10.1039/C5CP01274K. (354)

A MNDO study of olefin epoxidation by peroxyacids. Hammond effects on the computed transition structures: J. Kaneti, Tetrahedron 1986, 42, Issue 14, Pages

4017-4026 1. Wu, Y.-K., Liu, H.-J., Zhu, J.-L. 2008, Synlett (4), pp. 621-623 QCPE Bull. 1, 41 (1982) 1. А. С. Зюбин, Ж. Структ. хим. 26(4), 31 (1984) 2. А. С. Зюбин, Ж. Структ. хим. 26(4), 37 (1984) 3. А. С. Зюбин, Ж. Неорг. хим. 31, 1091 (1986) 4. В. В. Якобсон, Ж. Структ. хим. 27(1), 18 (1987) (359)

(H) Accurate Theoretical Estimates of the Electron Affinities of AHn Molecules by Isogyric Comparisons. Proton Affinities of AHn- Anions: POPLE JA,

SCHLEYER PV, KANETI J, Spitznagel G.W. CHEMICAL PHYSICS LETTERS 1988, 145: 359-364

1. C. F. Rodriguez, A. C. Hopkinson, Can. J. Chem. 70, 2234-2240 (1992) 2. H. Nakatsuji, H. Nakai, Cham. Phys. Lett. 197, 339-345 (1992) 3. P. L. Strout, G. E. Scuseria, J. Chem. Phys. 96, 9025-9029 (1992) 4. D. Sundholm, J. Olsen, S. A. Alexander, J. Chem. Phys. 96, 5229-5232 (1992) 5. C. F. Rodriguez, S. Sirois, A.C. Hopkinson, J. Org. Chem. 57, 4869-4876 (1992) 6. P. J. Bruna, G. A. Dilabio, J. S. Wright, J. Phys. Chem. 96, 6269-6278 (1992) 7. C. J. Reid, Int. J. Mass Spectrom 124, R25-R29 (1993) 8. A. Mehlorn, B. A. Hess, R. Zahradnik, J. Mol. Str. Theochem. 96, 67-80 (1992) 9. E. Anders, R. Koch, P. Freunsht, J. Comput. Chem. 14 (1993), 1301-1312 10. C. F. Rodriguez, A. C. Hopkinson, J. Phys. Chem. 97, 849-855 (1993) 11. C. J. Reid, J. Physics B, 26, 2359-2375 (1993) 12. S. Gronert, Organometallics 12, 3805-3807 (1993) 13. S. Gronert, J. Am. Chem. Soc. 115, 10258-10266 (1993) 14. J. Bentley, K. P. Madden, J. Am. Chem. Soc. 116, 11397-11406 (1994) 15. S. W. Staley, J. T. Strnad, J. Phys. Chem. 98, 116-121 (1994)

Page 17: List of citations from the Web of Science, Scopus and PoP.exe

17

16. B. S. Jursic, Z. Zdravkovski, Int. J. Quant. Chem. 54, 161-166 (1995) 17. M. Nooijem, R. J. Bartlett, J. Chem. Phys. 102, 3629-3647 (1995) 18. B. S. Jursic, J. Mol. Struct. Theochem 366, 109-112 (1996) 19. G. N. Merrill, G. D. Pahlke, S. R. Kass, J. Am. Chem. Soc. 118, 4462-4468

(1996) 20. J. P. Gu, R. J. Buenker, G. Hirsch, P. Jensen, P. R. Bunker, J. Mol. Spectr. 178,

172-183(1996) 21. D. M. Miller, W. D. Allen, H. F. Schaefer, Mol. Phys. 88, 717-739 (1996) 22. S. Chattopadhyay, Chem. Phys. Lett. 361 (2002), 298 23. P. J. Bruna, J. Mol. Struct. 599 (2001), 261 24. G. Lanza, J. Am. Chem. Soc. 122 (2000), 12764 25. H. F. De Souza, J. Comput. Chem. 21 (2000), 1119 26. Cernusak I, Zavazanova A, Raab J, et al. COLLECT CZECH CHEM C 68 (1):

75-88 2003 27. Woon DE, Beck DR, CHEM PHYS LETT 347 (1-3): 255-260 OCT 19 2001 28. Morosi G, Mella M, Bressanini D , J CHEM PHYS 111 (15): 6755-6758 OCT 15

1999 29. Gutsev GL, Jena P, Bartlett RJ, J CHEM PHYS 110 (6): 2928-2935 FEB 8 1999 30. Gutsev GL, Bartlett RJ, POL J CHEM 72 (7): 1604-1614 Suppl. S JUL 1998 31. Merrill GN, Kass SR, J AM CHEM SOC 119 (50): 12322-12337 DEC 17 1997 32. JURSIC BS, THEOCHEM-J MOL STRUC 357 (3): 243-253 DEC 8 1995 33. JURSIC BS, ZDRAVKOVSKI Z, INT J QUANTUM CHEM 56 (2): 115-123

OCT 15 1995 34. CRAMER CJ, DULLES FJ, STORER JW, et al. J PHYS CHEM-US 98 (1): 116-

121 JAN 6 1994 35. REID CJ, INT J MASS SPECTROM 127: 147-160 AUG 19 1993 36. REID CJ, INT J MASS SPECTROM 124 (3): R25-R29 APR 23 1993 37. RAGHAVACHARI K, ROHLFING CM, J CHEM PHYS 94 (5): 3670-3678

MAR 1 1991 38. TUPPER KJ, GAJEWSKI JJ, COUNTS RW, THEOCHEM-J MOL STRUC 81

(3-4): 263-275 OCT 15 1991 39. GUTSEV GL, ZIEGLER T, J PHYS CHEM-US 95 (19): 7220-7228 SEP 19

1991 2. (315)

40. SANA M, LEROY G, THEOCHEM-J MOL STRUC 72 (3-4): 307-325 JAN 31 1991

41. SANA M, LEROY G, WILANTE C, ORGANOMETALLICS 10 (1): 264-270 JAN 1991

42. VONNAGYFELSOBUKI EI, KIMURA K, J PHYS CHEM-US 94 (21): 8041-8044 OCT 18 1990

43. SANA M, LEROY G, THEOR CHIM ACTA 77 (6): 383-394 SEP 1990 44. HOPKINSON AC, RODRIQUEZ CF, LIEN MH, CAN J CHEM 68 (8): 1309-

1316 AUG 1990 45. CURTISS LA, JONES C, TRUCKS GW, et al., J CHEM PHYS 93 (4): 2537-

2545 AUG 15 1990 46. LAMMERTSMA K, GUNER OF, THIBODEAUX AF, et al., J AM CHEM

SOC 111 (25): 8995-9002 DEC 6 1989 47. FELLER D, DAVIDSON ER, J CHEM PHYS 90 (2): 1024-1030 JAN 15 1989 48. Sheng XH, Zhu ZH, Gao T, et al.: Molecular structure of AlHn (n=1-3) and

thermodynamic stability of AlH3, ACTA PHYSICA SINICA 55 (7): 3420-3432 JUL 2006

Page 18: List of citations from the Web of Science, Scopus and PoP.exe

18

49. Sun JF, Wang JM, Shi DH, et al.: Structure and analytic potential energy functions of the molecules BH2 and AIH(2), ACTA PHYSICA SINICA 55 (9): 4490-4495 SEP 2006

50. Chattopadhyay S, Mitra A, Sinha D: Explicitly intruder-free valence-universal multireference coupled cluster theory as applied to ionization spectroscopy , JOURNAL OF CHEMICAL PHYSICS 125 (24): Art. No. 244111 DEC 28 2006

51. Damrauer R, Pusede SE, Custer TC: Computational studies of electron affinities, acidities, and bond dissociation energies of boron-containing species: The CH3(CH2)(n-1)BH2, CH2F(CH2)(n-1)BH2, and CH3(CH2)(n-1)BHF series ORGANOMETALLICS 26 (7): 1599-1606 MAR 26 2007

52. Miliordos, E., Mavridis, A: Ab initio investigation of the electronic structure and

bonding of BH, B H-, and HBBH molecules, Journal of Chemical Physics 2008,

128 (14), art. no. 144308 53. Adhikari, K., Chattopadhyay, S., Kumar Nath, R., Kumar De, B., Sinha, D.

Chemical Physics Letters 2009, 474 (1-3), pp. 199-206 54. Ojeda, O. U.; Cagin, T. Computers, Materials and Continua, 2010, 16, 127-173. 55. Zhang, S.B., Wang, J.G., Janev, R.K., Chen, X.J. Electron collisions with the

BH2 radical using the R-matrix method: Physical Review A - Atomic, Molecular,

and Optical Physics 2010, 82 (6), art. no. 062711 56. Transition Spectrum Intensities and Absorption Coefficients of Hydride BH2

Free Radical Molecule: Wu Dong-Lan; Tan Bin; Zhang Xin-Qin; Xie, A.D. CHINESE PHYSICS LETTERS 2012, 29(8), Article Number: 083302 DOI: 10.1088/0256-307X/29/8/083302

(415) ANGELOVA O, KIRILOV EMG, KIRILOV M, Petrov G, Kaneti J, Macicek J:

THE FORMATION OF 2-OXOPROPYL-2-OXOPROPYLIDENE-DIPHENYLPHOSPHORANE - CRYSTAL AND MOLECULAR-STRUCTURE OF ITS LITHIUM ENOLATE: J. Chem. Soc. Perkin Trans. II 1989, 1405-1408

1. Maurizot V, Jaeger L, Kolbe A,Wagner C, Wagner C, Taillefer M, Cristau HJ, J. Mol. Struct. 609 (2002), 109-114 2. Denmark SE, Swiss KA, Miller PC, Wilson CR: HETEROATOM CHEMISTRY 9 (2): 209-218 Sp. Iss. SI 1998 (417) The Preference of 1-Methylallyl Polar Organometallics and Carbanions for cis Rather

than for trans Geometries: Schleyer, PvR; Kaneti, J; Wu YD, J. Chandrasekhar: J. Organometal. Chem. 426, 143-157 (1992)

1. I. Marek, J. M. Lefrancois, J. F. Normant, ACYCLIC STEREOCONTROL

VIA ORGANOGEMBISMETALLIC REAGENTS .3. SynLett., 8, 633-635 (1992)

2. J. F. Normant, I. Marek, J. M. Lefrancois, DIASTEREOSELECTIVE CARBOMETALATION OF VINYLMETALS: Pure Appl. Chem. 64, 1857-1864 (1992)

Page 19: List of citations from the Web of Science, Scopus and PoP.exe

19

3. I. Marek, J. M. Lefrancois, J. F. Normant, DIASTEREOSELECTIVE CARBOMETALATION OF VINYLMETALS: J. Org. Chem. 59(15), 4154-4161 (1994)

4. V. Dimitrov, S. Simova. K. Kostova, Highly effective and practical stereoselective synthesis of new homoallylic alcohols with (+)-camphor and (-)-fenchone skeleton: Tetrahedron 52, 1699-1706 (1996)

5. H. Kurosawa, K. Hirako, S. Natsume, S. Ogoshi, N. Kanehisa, Y. Kai, S. Sakaki, K. Takeuchi, New insights into structures, stability, and bonding of mu-allyl ligands coordinated with Pd-Pd and Pd-Pt fragments: Organometallics 15, 2089 (1996)

6. R. Taube, H. Windish, S. Maiwald, H. Hemling, H. Schumann, Catalysis of complexes .48. Synthesis and structure of the first neutral tris(allyl)lanthanoid complexes La(eta(3)-C3H5)(3)center dot 1.5dioxane and Nd(eta(3)-C3H5)(3)center dot dioxane and their suitability as single-site catalysts for stereospecific butadiene polymerization: J. Organometal. Chem. 513, 49-61 (1996)

7. Kubota K, Mori S, Nakamura M, Nakamura, E., Olefin carbometalation with (alkoxy)allylic lithium and zinc reagents. Four-centered vs six-centered mechanism of allylmetalation reaction: J AM CHEM SOC 120 (51): 13334-13341 DEC 30 1998

8. Rothlisberger U, Sprik M, Klein ML, Living polymers - Ab initio molecular dynamics study of the initiation step in the polymerization of isoprene induced by ethyl lithium: J CHEM SOC FARADAY T 94 (4): 501-508 FEB 21, 1998

9. Tobisch S, Taube R, Density functional (DFT) study of the anti-syn isomerization of the butenyl group in cationic and neutral (butenyl) (butadiene) (monoligand)nickel(II) complexes: ORGANOMETALLICS 18 (16): 3045-3060 AUG 2 1999

10. Liepins V, Backvall JE, Regioselective 1,4-silylcupration of 1,3-dienes - Characterization and electrophilic trapping of the intermediate (sigma-allyl)copper complex: EUR J ORG CHEM (21): 3527-3535 NOV 2002

11. Tobish, S. Canadian Journal of Chemistry 2009, 87 (10), pp. 1392-1405 12. Tobish, S. Mechanistic exploration of intramolecular aminodiene

hydroamination/ cyclisation mediated by constrained geometry organoactinide complexes: A DFT study : Chemistry - A European Journal 2010, 16, 3441-3458

13. Jochmann P (Jochmann, Phillip), Maslek S (Maslek, Stefanie), Spaniol TP, (Spaniol, Thomas P.), Okuda J (Okuda, Jun), Organometallics 2011, 30(7), 1991-1997

14. Highly Diastereo- and Enantioselective Cu-Catalyzed Borylative Coupling of 1,3-Dienes and Aldimines, Jiang, LY; Cao, P; Wang, M; Chen, B; Wang, B; Liao, J; Angew. Chem. Int. ed. 2016, 55, 13854-13858. DOI: 10.1002/anie.201607493

(431)

(H) Georgiev, E. M.; Kaneti, J.; Troev, K.; Roundhill, D. M. An Ab initio study of the Atherton-Todd reaction... J. Am. Chem.

Soc. 115, 10964-10973 (1993)

Page 20: List of citations from the Web of Science, Scopus and PoP.exe

20

1. G. Depetris, G. Occhiucci, F. Pepi, Int. J. Mass Spectrom. 1994, 136, 155-166 2. J. P. Rasanen, E. Pohjala, T. A. Pakkanen, J. Chem. Soc. Perkin II 1996, 39-47 3. V. B. Oza, R. C. Corcoran, J. Org. Chem. 1995, 60, 3680-3684 4. J. P. Rasanen, E. Pohjala, H. Nikander, T. A. Pakkanen, J. Phys. Chem. 1996, 100,

8230 5. L. N. Heydorn, Ling Y, de Oliveira G, Z. Phys. Chemie-Int. J. Res. Phys. Chem.

Chem. Phys. 215 (2001), 141-182 6. Chen XL, Yu YZ, Qu LB, et al., SYNTHETIC COMMUN 34 (3): 493-499 FEB

2004 7. Ding YX, Liu ZF, Zhou HY, et al., PHOSPHORUS SULFUR 134: 531-536

MAR-APR 1998 8. TURECEK F, GU M, HOP CECA, J PHYS CHEM-US 99 (8): 2278-2291 FEB

23 1995 9. OUSSAID B, SOUFIAOUI M, GARRIGUES B, SYNTHETIC COMMUN 25

(6): 871-875 1995 10. Shi EX, Pei CX, SYNTHESIS-STUTTGART (18): 2995-2998 DEC 17 2004 11. Li XS, Fu H, Jiang YY, et al. SYNLETT (14): 2600-2602 NOV 22 2004 12. Wu, M.-S., Chen, R.-Y., Huang, Y.: Crystal structure of 1-(N-dichlorophosphoryl-

N-cyclohexyl)-amino-1- dichlorophosphinyl-chloromethane, Jiegou Huaxue 2004, 23 (8), pp. 886-889

13. Chen XL, Qu LB, Guo L, Lu JS, Liu Y, Wu JL, Zhao YF: CHINESE JOURNAL OF CHEMISTRY 2005, 23 (6): 733-739

14. Zhang, X.Z., Wu, M.S., Huang, Y., Chen, R.Y.: Convenient and one-pot method for synthesis of the aminomethylene bisphosphonic acid derivatives from aldehydes, Chinese Chemical Letters 2006, 17 (6), pp. 765-768

15. Wu, M.S., Zhang, X.Z. Journal of Chemical Research (3) 2007, pp. 146-147 16. Algarra, A.G., Basallote, M.G., Fernandez-Trujillo, M.J., Hernandez-Molina, R.,

Safont, V.S. Catalytic effect of a second H3PO2 in the mechanism of stabilisation of the unstable pyramidal tautomer of H3PO2 coordinated at [Mo3S4M?] clusters (M? = Ni, Pd): Chemical Communications 2007(29), pp. 3071-3073

17. Chen XL, Shi XN, Qu LB, Yuan JW, Lu JS, Zhao YF : CHINESE JOURNAL OF CHEMISTRY 25 (7): 1008-1013 JUL 2007

18. Szulc, Z.M., Obeid, L.M., Hannun, Y.A., Bielawska, A.: Polish Journal of

Chemistry 2007, 81 (11), pp. 1899-1909 19. Sundararajan, K., Sankaran, K. Journal of Physical Chemistry A 2008, 112, 5917-

5924 20. Algarra AG (Algarra, Andres G.), Fernandez-Trujillo MJ (Fernandez-Trujillo,

Maria J.), Safont VS (Safont, Vicent S.), Hernandez-Molina R (Hernandez-Molina, Rita), Basallote MG (Basallote, Manuel G.): DALTON TRANSACTIONS 2009 (9), 1579-1586

21. Gaan, S.; Rupper, P.; Salimova, V.; Heuberger, M.; Rabe,S.;Vogel,F. Polymer

Degrad. Stabil. 2009, 94(7), 1125-1134. 22. Rupper P (Rupper, Patrick), Gaan S (Gaan, Sabyasachi), Salimova V (Salimova,

Viktoriya), Heuberger M (Heuberger, Manfred), JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS 2010, 87, 93-98.

23. Malysheva, S. F.; Artemiev, A. V.; Gusarova, N. K.; Klyba, L. V.; Tatarinova, A. A.; Trofimov, B. A., Rus. J. Gen. Chem. 2010, 80, 1043-1044.

24. Gaan, S., Mauclaire, L., Rupper, P., Salimova, V., Tran, T.-T., Heuberger, M., Thermal degradation of cellulose acetate in presence of bis-phosphoramidates: Journal of Analytical and Applied Pyrolysis 2011, 90 (1), pp. 33-41

Page 21: List of citations from the Web of Science, Scopus and PoP.exe

21

25. Synthesis of new organophosphorus compounds using the atherton-todd reaction as a versatile tool - Wagner, Sebastian; Rakotomalala, Muriel; Bykov, Yana; Walter, Olaf; Doering, Manfred; HETEROATOM CHEMISTRY 2012, 23, 216-222, DOI: 10.1002/hc.21006

26. Spectral assignment of phenanthrene derivatives based on 6H-dibenzo[C,E][1,2] oxaphosphinine 6-Oxide by NMR and quantum chemical calculations, Wagner, S., Rakotomalala, M., Chesneau, F., Zevaco, T., Döring, M. Phosphorus, Sulfur

and Silicon and the Related Elements 2012, 187 (7) , pp. 781-798 27. Preliminary stereochemical investigation of the Atherton-Todd-type reaction

between valine hydrospirophosphorane and phenols: Cao, S., Guo, Y., Wang, J., Qi, L., Gao, P., Zhao, H., Zhao, Y., Tetrahedron Letters 2012, 53 (46), 6302-6305; DOI: 10.1016/j.tetlet.2012.09.056

28. Nguyen, T.-M., Chang, S., Condon, B., Slopek, R., Graves, E., Yoshioka-Tarver, M. Structural effect of phosphoramidate derivatives on the thermal and flame retardant behaviors of treated cotton cellulose, Industrial and Engineering

Chemistry Research 2013, 52 (13), pp. 4715-4724. DOI: 10.1021/ie400180f 29. Physical properties, ion-ion interactions, and conformational states of ionic liquids

with alkyl-phosphonate anions, Pitawala, J., Scheers, J., Jacobsson, P., Matic, A. Journal of Physical Chemistry B 2013, 117 (27) , pp. 8172-8179; DOI:

10.1021/jp4042974 30. Neisius, M., Liang, S., Mispreuve, H., Gaan, S. Phosphoramidate-containing

flame-retardant flexible polyurethane foams, Industrial and Engineering

Chemistry Research 2013, 52 (29) , pp. 9752-9762; DOI: 10.1021/ie400914u 31. Sun, Q., Yang, Q., Gong, S., Fu, Q., Xiao, Q., Synthesis and enzymatic evaluation

of phosphoramidon and its β anomer: Anomerization of α-L-rhamnose triacetate

upon phosphitylation: Bioorganic and Medicinal Chemistry 2013, 21 (21), pp. 6778-6787; DOI: 10.1016/j.bmc.2013.07.052

32. N. Matthias Neisius, Manuel Lutz, Daniel Rentsch, Patrick Hemberger, and Sabyasachi Gaan, Synthesis of DOPO-Based Phosphonamidates and their Thermal Properties, Ind. Eng. Chem. Res., 2014, 53 (8), pp 2889–2896; DOI:

10.1021/ie403677k

33. Stéphanie S. Le Corre, Mathieu Berchel, Hélène Couthon-Gourvès, Jean-Pierre Haelters and Paul-Alain Jaffrès, Atherton–Todd reaction: mechanism, scope and applications, Beilstein J. Org. Chem. 2014, 10, 1166–1196. doi:10.3762/bjoc.10.117

34. Li Shan, Chen Tieqiao, Saga Yuta, Han Li-Biao, Chloroform-based Atherton–Todd-type reactions of alcohols and thiols with secondary phosphine oxides generating phosphinothioates and phosphinates: RSC Advances 2015, 5(88):71544-71546, DOI: 10.1039/C5RA16015D.

35. Khalifah A. Salmeia, Sabyasachi Gaan, An overview of some recent advances in DOPO-derivatives: Chemistry and flame retardant applications, Polymer Degradation and Stability, Volume 113, March 2015, Pages 119–134, doi:10.1016/j.polymdegradstab.2014.12.014

(466)

Page 22: List of citations from the Web of Science, Scopus and PoP.exe

22

A CAS SCF Study of the Reaction Mechanism of the Alpha-Alkynone Rearrangement,

Kaneti, J.: Helv. Chim. Acta 2000, 83/4, 836-842

1. M. Nagel, Hansen, H.-J. SYNLETT 2002(5), 692-696. 2. Larkin, J.D., Bhat, K.L., Markham, G.D., Brooks, B.R., Lai, J.H., Bock, C.W.,

A computational investigation of the geometrical structure and protodeboronation of boroglycine, H2N-CH2-B(OH) 2 : Journal of Physical

Chemistry A 2007, 111 (28), pp. 6489-6500 3. Greenman, L., Mazziotti, D.A.: Energy Barriers of Vinylidene Carbene

Reactions from the Anti-Hermitian Contracted Schrödinger Equation, Journal

of Physical Chemistry A 2010, 114 (1), pp. 583-588. (469)

Solvent Induced Shifts of Electronic Spectra. III. Semiempirical MO Calculation of the Solvent Effect on the Fluorescence Spectra of Some

Dihydroquinolinones: BAKALOVA S., KANETI J. Spectrochimica Acta A 2000, 56/8, 1443-

1452 1. J. Peszke, Sliwa, W. Spectrochim. Acta Pt. A 2002, 58, 2127-2133 2. Dondela B, Peszke J, Sliwa W: JOURNAL OF MOLECULAR STRUCTURE 753

(1-3): 154-164 OCT 28 2005 3. A. Harriman, Photophysical processes in condensed phases: Photochemistry,

2001, vol. 32, pp. 15-46, Royal Soc. Chem., London 4. Yesylevskyy SO, Klymchenko AS, Demchenko AP. Semi-empirical study of two-

color fluorescent dyes based on 3-hydroxychromone: JOURNAL OF MOLECULAR STRUCTURE-THEOCHEM 755 (1-3): 229-239 NOV 30 2005

5. Jozwik D, Miller E, Wandelt B, Wysocki S. The styrylpyridine dye for the silane sol-gel transition studies by time-dependent fluorescence: SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY 64 (5): 1125-1132 Sp. Iss. SI AUG 2006

6. Dondela, Barbara; Chrzastek, Lidia: Journal of Physics: Conference Series, Volume 79, Issue 1, 1 August 2007, Article number 012042

7. Carlotto, S. Thesis, Padova, 2008. 8. Deska, M.; Sliwa, W., in Chemistry and Environmental Protection, Puchal, C.

And Sliwa, W., Eds. ISBN 978-83-7455-102-1, 2008, XII, pp. 91-101. 9. Nayak, M. K.; Kim, B.-H.; Kwon, J. E.; Park, S.; Seo, J.; Chung, J. W.; Park, S.

Y., Chem. Eur. J. 2010, DOI: 10.1002/chem.200902615 10. S. A. Moiz, S. M. Imran, A. M. Nahhas, F. Rehman, M. M. Ahmed, H.-T. Kim, J.-

H- Lee, ICET Conference, Islamabad 8-9 Oct. 2012, pp. 1-6, DOI: 10.1019/ICET.2012.6375494

11. Recyclable, magnetic ionic liquid bmim[FeCl4]-catalyzed, multicomponent, solvent-free, green synthesis of quinazolines, Panja, S.K., Saha, S., RSC Advances

2013, 3 (34) , pp. 14495-14500; DOI: 10.1039/c3ra42039f 12. S. Panja, S. Nayak, S. K. Ghosh, M. Selvakumar and S. Chattopadhyay, Self-

assembly of a biodegradable branched PE-PCL-b-PEC amphiphilic polymer:

Page 23: List of citations from the Web of Science, Scopus and PoP.exe

23

synthesis, characterization and targeted delivery of doxorubicin to cancer cells: RSC Adv., 2014, 4, 51766-51775, DOI: 10.1039/C4RA08351B

13. Chao Zheng, Yang Wang, Runfeng Chen, Yimu Ji, Wei Huang, Solvation effects on the ground and excited states of p–n diblock-conjugated polymers. Theoretical insights, High Performance Polymers, December 2014 vol. 26 no. 8, 867-873, doi: 10.1177/0954008314533360

14. Spectral properties of BADAN in solutions with different polarities, A.V. Fonin, I.M. Kuznetsova, K.K. Turoverov, Journal of Molecular Structure; doi:10.1016/j.molstruc.2015.01.038

(483) Change of the hydrolytic mechanism of 2-hydroxy H-phosphonodiesters

in aprotic organic media. cis-1,2-diol monoanions as leaving groups TZOKOV SB, MOMTCHEVA RT, VASSILEV NG, J. Kaneti, D.

D. Petkov, J. Am. Chem. Soc. 1999, 121, 5103-5107 1. J. E. Omakor, J. Chem. Soc.-Perkin Trans. 2 2001(3), 324-330 2. M. Sobkowski, M. Wenska, A. Kraszewski, J. Stawinski, Nucleosides Nucleotides Nucleic Acids 19 (2000), 1487-1503 3. Lonnberg T, Mikkola S, J ORG CHEM 69 (3): 802-810 FEB 6 2004 4. Hall, C. D. King's College, London, UK. Organophosphorus Chemistry 2003, 33, 68-83 5. Lonnberg T, Korhonen J, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY 127 (21): 7752-7758 JUN 1 2005 6. Ora M, Linjalahti H, Lonnberg H, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY 127 (6): 1826-1832 FEB 16 2005 7. Ashkenazi N, Karton Y, Segall Y, TETRAHEDRON LETTERS 45 (43): 8003-8006 OCT 18 2004 8. Kiviniemi A, Lonnberg T, Ora M, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY 126 (35): 11040-11045 SEP 8 2004 (491)

(H) Siebrand W, Zgierski MZ, Smedarchina ZK, Vener M, Kaneti, J: The structure of phenol-ammonia clusters before and after proton

transfer. A theoretical investigation: Chem. Phys. Letters 1997, 266, 47-52

1. S. Alavi, J. Chem. Phys. 117 (2002), 2599-2608 2. A. L. Sobolewski, J. Phys. Chem. A 105 (2001), 9275-9283 3. C. Dedonder-Lardeux, Chem. Rev. 100 (2000), 4023-4037 4. K. S. Kim, Chem. Rev. 100 (2000), 4145-4185 5. G. Gregoire, J. Phys. Chem. A 104 (2000), 9087-9090 6. M. Schmitt, J. Chem. Phys. 113 (2000), 2995-3001

Page 24: List of citations from the Web of Science, Scopus and PoP.exe

24

7. M. Schmitt, Chem. Phys. 254 (2000), 349-361 8. G. Pino, PCCP Phys. Chem. Chem. Phys. 2 (2000), 893-900 9. A. Bach, J. Chem. Phys. 112 (2000), 560-565 10. Daigoku K, Ishiuchi S, Sakai M, et al., J CHEM PHYS 119 (10): 5149-5158

SEP 8 2003 11. David O, Dedonder-Lardeux C, Jouvet C, INT REV PHYS CHEM 21 (3):

499-523 JUL-SEP 2002 12. Ishiuchi S, Daigoku K, Saeki M, et al., J CHEM PHYS 117 (15): 7083-7093

OCT 15 2002 13. Pino GA, Dedonder-Lardeux C, Gregoire G, et al. J CHEM PHYS 111 (24):

10747-10749 DEC 22 1999 14. Martrenchard-Barra S, Dedonder-Lardeux C, Jouvet C, et al. CHEM PHYS

LETT 310 (1-2): 173-179 AUG 27 1999 15. Jacoby C, Hering P, Schmitt M, et al. CHEM PHYS 239 (1-3): 23-32 DEC 15

1998 16. Pryor BA, Palmer PM, Andrews PM, et al. J PHYS CHEM A 102 (19): 3284-

3292 MAY 7 1998 17. Sodupe M, Oliva A, Bertran J, J PHYS CHEM A 101 (48): 9142-9151 NOV

27 1997 18. Esboui M, Nsangou M, Jaidane N, et al. CHEMICAL PHYSICS 311 (3): 277-

285 MAY 16 2005 19. Nsangou A, Jaidane N, Ben Lakhdar Z, JOURNAL OF MOLECULAR

STRUCTURE-THEOCHEM 758 (2-3): 87-95 JAN 31 2006 20. Wolf, I., Shapira, A., Giniger, R., Miller, Y., Gerber, R.B., Cheshnovsky, O.

Angewandte Chemie - International Edition 2008, 47(33), 6272-6274 21. Carrera, A., Nielsen, I.B., Çaŗcabal, P., Dedonder, C., Broquier, M., Jouvet,

C., Domcke, W., Sobolewski, A.L. Journal of Chemical Physics 2009, 130(2), art. no. 024302

22. Melnichuk Anna; Bartlett Rodney J. JOURNAL OF CHEMICAL PHYSICS

2011, 134(24), art. 244303, DOI: 10.1063/1.3603456 23. Ground state proton transfer in phenol-(NH3)n(n ≤ 11) clusters studied by

Mid-IR spectroscopy in 3-10 µm range, Miyazaki, M., Kawanishi, A., Nielsen, I., Alata, I., Ishiuchi, S.-I., Dedonder, C., Jouvet, C., Fujii, M. Journal of

Physical Chemistry A 2013, 117 (7), 1522-1530. DOI: 10.1021/jp312074m (514)

Tzokov S.B., Vassilev N.G., Momtcheva R.T., Kaneti J., Petkov D.D. H-tetraoxaspirophosphoranes as possible intermediates in the

phosphonylation by phosphorous acid / oxiranes, Phosphorus, Sulfur and

Silicon and Related Elements, 2000, 166, pp. 187-196.

1. Oussadi, K., Montembault, V., Belbachir, M., Fontaine, L. Ring-opening bulk

polymerization of five- and six-membered cyclic phosphonates using maghnite,

a nontoxic proton exchanged montmorillonite clay, Journal of Applied

Polymer Science 2011, 122 (2) , pp. 891-897. DOI: 10.1002/app.34193

(515)

Page 25: List of citations from the Web of Science, Scopus and PoP.exe

25

(H) Francois Ogliaro, Samuel P. de Visser, Shimrit Cohen, Jose Kaneti, Sason Shaik: The experimentally elusive oxidant of cytochrome P450: A

theoretical "trapping" defining more closely the "real" species, Chembiochem 2001, 2(11), 848

1. Harris, D.L.: High-valent intermediates of heme proteins and model compounds, Current Opinion in Chemical Biology 2001, 5 (6), pp. 724-735

2. Himo, Siegbahn, Chem Rev. 2003, 103, 2421-2456 3. Rydberg P, Sigfridsson E, Ryde U, J BIOL INORG CHEM 9 (2): 203-223

MAR 2004 4. Swart, Marcel; Groenhof, Andre R.; Ehlers, Andreas W.; Lammertsma, Koop.

Validation of Exchange−Correlation Functionals for Spin States of Iron Complexes, Journal of Physical Chemistry A (2004), 108(25), 5479-5483

5. Rydberg, Patrik; Sigfridsson, Emma; Ryde, Ulf. Chemical Centre, Department of Theoretical Chemistry, Lund University, Lund, Swed. JBIC, Journal of Biological Inorganic Chemistry (2004), 9(2), 203-223

6. John C Hackett, Robert W. Brueggemeier, and Christopher M. Hadad, The Final Catalytic Step of Cytochrome P450 Aromatase:  A Density Functional Theory Study, J. Am. Chem. Soc., 2005, 127 (14), pp 5224–5237, DOI:

10.1021/ja044716w 7. Choe YK, Nagase S, JOURNAL OF COMPUTATIONAL CHEMISTRY 26

(15): 1600-1611 NOV 30 2005 8. Schoneboom JC, Neese F, Thiel W, JOURNAL OF THE AMERICAN

CHEMICAL SOCIETY 127 (16): 5840-5853 APR 27 2005 9. Choe YK, Nagase S, JOURNAL OF COMPUTATIONAL CHEMISTRY 26

(15): 1600-1611, NOV 30 2005 10. Sen K, Hackett JC, JOURNAL OF PHYSICAL CHEMISTRY B, 2009, 113(23),

8170-8182. 11. Jing YQ, Han KL, Quantum mechanical effect in protein-ligand interaction:

EXPERT OPINION ON DRUG DISCOVERY 2010, 5, 33-49 12. Sen K, Hackett JC, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY

2010, 132(30), 10293-10305. 13. Lonsdale, R (Lonsdale, Richard); Olah, J (Olah, Julianna); Mulholland, AJ

(Mulholland, Adrian J.); Harvey, JN (Harvey, Jeremy N.): Does Compound I Vary Significantly between Isoforms of Cytochrome P450? JOURNAL OF THE AMERICAN CHEMICAL SOCIETY Volume: 133 Issue: 39 Pages: 15464-15474 DOI: 10.1021/ja203157u Published: OCT 5 2011

14. Costas Miquel, Selective C-H oxidation catalyzed by metalloporphyrins: COORDINATION CHEMISTRY REVIEWS 2011, 255(23-24), 2912-2932 DOI: 10.1016/j.ccr.2011.06.026

15. Lonsdale, R (Lonsdale, Richard); Harvey, JN (Harvey, Jeremy N.); Mulholland, AJ (Mulholland, Adrian J.), Effects of Dispersion in Density Functional Based Quantum Mechanical/Molecular Mechanical Calculations on Cytochrome P450 Catalyzed Reactions: JOURNAL OF CHEMICAL

THEORY AND COMPUTATION 2012, 8(11), 4637-4645; DOI: 10.1021/ct300329h

(530)

Page 26: List of citations from the Web of Science, Scopus and PoP.exe

26

Does polarizing medium affect the kinetics of the alkane hydroxylation by compound I of cytochrome P450? Cohen S., Ogliaro F., De Visser S.P., Kaneti J., Shaik

S. J. Inorg. Biochem., 2001, 86, p. 183.

1. Fokin, A.A., Schreiner, P.R. Selective alkane transformations via radicals and radical cations: Insights into the activation step from experiment and theory 2002, Chemical Reviews 102 (5), pp. 1551-1593

(H) S. P. de Visser, Jose Kaneti, R. Neumann, S. Shaik: JOURNAL OF ORGANIC CHEMISTRY 2003, 68 (7): 2903-

2912 1. Mori N, Togo H, SYNLETT 2004 (5): 880-882 APR 3 2. Iskra J, Bonnet-Delpon D, Begue JP, TETRAHEDRON LETT 2003, 44 (33): 6309-6312 AUG 11 3. Freccero, Mauro; Gandolfi, Remo; Sarzi-Amade, Mirko; Rastelli, Augusto. Dipartimento di Chimica Organica, Universita di Pavia, Pavia, Italy. Journal of Organic Chemistry (2004), 69(22), 7479-7485 4. Iskra, Jernej; Stavber, Stojan; Zupan, Marko. Laboratory for Organic and Bioorganic Chemistry, Jozef Stefan Institute and Faculty of Chemistry and Chemical Technology, University of Ljubljana, Ljubljana, Slovenia. Synthesis 2004, 11, 1869-1873. 5. Berkessel, Albrecht; Adrio, Jens A. Institut fuer Organische Chemie der Universitaet zu Koeln, Cologne, Germany. Advanced Synthesis & Catalysis (2004), 346(2+3), 275-280 6. Wang QF, Mi ZT, Wang YQ, et al. JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL 229 (1-2): 71-75 MAR 29 2005 7. Mori N, Togo H, TETRAHEDRON 61 (24): 5915-5925 JUN 13 2005 8. Choi BG, Ko SY, Nam W, et al. BULLETIN OF THE KOREAN CHEMICAL SOCIETY 26 (11): 1819-1822 NOV 20 2005 9. Armstrong, A.; Knight, J. D. Annu. Reports Prog. Chem, Section B, 2004, 100, pp. 51-70, DOI: 10.1039/B401745P 10. Bo, G. C.; Ko, S. Y.; Nam, W.; Jeong, B. Bull. Korean Chem. Soc. 2005, 26(11), pp. 1819-1822. 11. Berkessel A, Adrio JA, Huettenhain D, et al. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY 2006, 128 (26): 8421-8426 JUL 5 12. Li J, Zhao GD, Gao S, et al. Epoxidation of allyl chloride to epichlorohydrin by a reversible supported catalyst with H2O2 under solvent-free conditions: ORGANIC PROCESS RESEARCH & DEVELOPMENT 10 (5): 876-880 SEP 15 2006 13. Katja Zmiteka, Stojan Stavbera, Marko Zupana, Daniele Bonnet-Delponb, Sebastien Charneauc, Phillipe Grellierc and Jernej Iskraa,: Synthesis and antimalarial activities of novel 3,3,6,6-tetraalkyl-1,2,4,5-tetraoxanes, Bioorganic & Medicinal Chemistry, Volume 14, Issue 23 , 1 December 2006, Pages 7790-7795. 14. Berkessel A, Adrio JA: Dramatic acceleration of olefin epoxidation in fluorinated alcohols: Activation of hydrogen peroxide by multiple H-bond networks

Page 27: List of citations from the Web of Science, Scopus and PoP.exe

27

JOURNAL OF THE AМERICAN CHEMICAL SOCIETY 2006, 128 (41): 13412-13420 15. Li, J., Zhao, G., Gao, S., Lv, Y., Li, J., Xi, Z.: Epoxidation of allyl chloride to epichlorohydrin by a reversible supported catalyst with H2O2 under solvent-free conditions, Organic Process Research and Development 2006, 10 (5), pp. 876-880 16. Maheswari, P.U., Tang, X., Hage, R., Gamez, P., Reedijk, J.: The role of carboxylic acids on a Na2WO4/H2WO4-based biphasic homogeneous alkene epoxidation, using H2O2 as oxidant, Journal of Molecular Catalysis A: Chemical 2006, 258 (1-2), pp. 295-301 17. Carraro M, Gardan M, Scorrano G, et al: Solvent-free, heterogeneous photooxygenation of hydrocarbons by Hyflon (R) membranes embedding a fluorous-tagged decatungstate, CHEMICAL COMMUNICATIONS (43): 4533-4535 2006 18. Bonchio M, Carraro M, Gardan M, et al.: Hybrid photocatalytic membranes embedding decatungstate for heterogeneous photooxygenation, TOPICS IN CATALYSIS 40 (1-4): 133-140 NOV 2006 19. Fontananova E, Drioli E, Donate L, BONCHIO Marcella; CARRARO Mauro; GARDAN Martino ; SCORRANO Gianfranco: Hybrid photocatalytic membranes embedding decatungstate for heterogeneous photooxydation, DESALINATION 200 (1-3): 705-707 NOV 20 2006; Euromembrane conference, Taormina , ITALIE (24/09/2006) 2006, vol. 200, no 1-3 (782 p.) [Document : 3 p.] (6 ref.), pp. 705-707 [3 page(s) (article)] 20. Zmitek, K., Stavber, S., Zupan, M., Bonnet-Delpon, D., Charneau, S., Grellier, P., Iskra, J.: Synthesis and antimalarial activities of novel 3,3,6,6-tetraalkyl-1,2,4,5-tetraoxanes, Bioorganic and Medicinal Chemistry 2006, 14 (23), pp. 7790-7795 21. Colladon, M., Scarso, A., Sgarbossa, P., Michelin, R.A., Strukul, G.: Regioselectivity and diasteroselectivity in Pt(II)-mediated "green" catalytic epoxidation of terminal alkenes with hydrogen peroxide: Mechanistic insight into a peculiar substrate selectivity, Journal of the American Chemical Society 2007, 129 (24), pp. 7680-7689 22. Czarnik-Matusewicz, B., Pilorz, S., Bieńko, D., Michalska, D. Molecular and electronic structures, infrared spectra, and vibrational assignment for ap and sc conformers of hexafluoro-iso-propanol: Vibrational Spectroscopy 2008, 47 (1), pp. 44-52 23. Berkessel, A., Organocatalysis by hydrogen bonding networks: ORGANOCATALYSIS – E. Schering Foundation Symp. Proceedings, 2008, vol. 2, pp. 281-297 24. Drioli, E., Fontananova, E., Bonchio, M., Carraro, M., Gardan, M., Scorrano, G. Cuihua Xuebao / Chinese Journal of Catalysis 2008, 29 (11), pp. 1152-1158 25. Stare, J., Henson, N.J., Eckert, J. Journal of Chemical Information and

Modeling 2009, 49 (4), pp. 833-846 26. Coulembier, O.; Sanders, D.P.; Nelson, A.; Hollenbeck, A.N.; Horn, H. W.; Rice, J.E.; Fujiwara, M.; Dubois, P.; Hedrick, J.L. Angew. Chem. Int. Ed. 2009, 48(28), 5170-5173. 27. García-Marín, H., Van Der Toorn, J.C., Mayoral, J.A., García, J.I., Arends I.W.C.E. Green Chemistry 2009, 11 (10), pp. 1605-1609 28. Etzenbach-Effers, K., Berkessel, A., Noncovalent organocatalysis based on hydrogen bonding: Elucidation of reaction paths by computational methods: Topics in

Current Chemistry 2010, 291, 1-27. 29. Santi, C., Santoro, S., Battistelli, B. : Organoselenium compounds as catalysts in nature and laboratory, Current Organic Chemistry 2010, 14 (20), pp. 2442-2462

Page 28: List of citations from the Web of Science, Scopus and PoP.exe

28

30. García-Marín, H., Van Der Toorn, J.C., Mayoral, J.A., García, J.I., Arends, I.W.C.E.: Epoxidation of cyclooctene and cyclohexene with hydrogen peroxide catalyzed by bis[3,5-bis(trifluoromethyl)-diphenyl] diselenide: Recyclable catalyst-containing phases through the use of glycerol-derived solvents, Journal of Molecular

Catalysis A: Chemical 2011, 334 (1-2), pp. 83-88 31. De, K., Legros, J., Crousse, B., Chandrasekaran, S., Bonnet-Delpon, D.: Synthesis of substituted 8-aminoquinolines and phenanthrolines through a Povarov approach, Organic and Biomolecular Chemistry 2011, 9 (2), pp. 347-350 32. Vuluga, D., Legros, J., Crousse, B., Slawin, A.M.Z., Laurence, C., Nicolet, P., Bonnet-Delpon, D. Influence of the structure of polyfluorinated alcohols on Brønsted acidity/hydrogen-bond donor ability and consequences on the promoter effect: Journal of Organic Chemistry 2011, 76 (4), pp. 1126-1133 33. Progress on organic synthesis using hydrogen peroxide as a green chemical reagent, Liu, Y., Zeng, Q., Tang, H., Gao, S., Yang, Z., Zhang, S., Liu, J.: Chinese

Journal of Organic Chemistry 2011, 31 (7), pp. 986-996 34. A highly efficient, green and recoverable catalytic system for the epoxidation of fatty esters and biodiesel with H2O2, De Torres, M., Arends, I.W.C.E., Mayoral, J.A., Pires, E., Jiménez-Osés, G. Applied Catalysis A: General 2012, 425-426, pp. 91-96. 35. Application of hydrogen peroxide encapsulated in silica xerogels to oxidation reactions: Bednarz, S., Ryś, B., Bogda, D. Molecules 2012, 17 (7) , pp. 8068-8078 36. Chloroperoxidase-catalyzed epoxidation of cis -β-methylstyrene: Distal pocket flexibility tunes catalytic reactivity: Morozov, A.N., Chatfield, D.C., Journal of

Physical Chemistry B 2012, 116(43), 12905-12914; DOI: 10.1021/jp302763h 37. J. C. van der Toorn, The use of aromatic selenides as oxidation catalysts, PhD Thesis, Delft, 2011, ISBN: 978-90-5335-461-2 38. de Torres, M (de Torres, Miriam); Jimenez-Oses, G (Jimenez-Oses, Gonzalo); Mayoral, JA.(Antonio Mayoral, Jose); Pires, E (Pires, Elisabet); Blanco, RM (Maria Blanco, Rosa); Fernandez, O (Fernandez, Oscar): Evaluation of several catalytic systems for the epoxidation of methyl oleate using H2O2 as oxidant, CATALYSIS

TODAY 2012, 195, 76-82; DOI: 10.1016/j.cattod.2012.05.005 39. Polyfluorinated mercaptoalcohol as a H-bond modifier of poly(2,3,4,5,6-pentafluorostyrene) (PPFS) enhancing miscibility of hydroxylated-PPFS with various acceptor polymers, Chen, J., Vuluga, D., Crousse, B., Legros, J., Duchet-Rumeau, J., Charlot, A., Portinha, D.: Polymer (United Kingdom) 2013, 54 (15) , pp. 3757-3766. DOI: 10.1016/j.polymer.2013.05.027 40. Selective monomethylation of primary amines with simple electrophiles, Thomas Lebleu, Xiaolu Ma, Jacques Maddaluno and Julien Legros, Chem. Commun.,

2014, 50, 1836-1838; DOI: 10.1039/c3cc48997c 41. Selective oxidation passing through η3-ozone intermediates: Applications to direct propene epoxidation using molecular oxygen oxidant, Manz, T.A., Yang, B. RSC Advances 2014, 4 (53), pp. 27755-27774, DOI: 10.1039/c4ra03729d 42. An eco-benign and highly efficient access to dihydro-1H-indeno[1,2-b] pyridines in 2,2,2-trifluoroethanol, Khaksar, S., Gholami, M. Journal of Molecular

Liquids 2014, 196, pp. 159-162, DOI: 10.1016/j.molliq.2014.03.030 43. New examples of template catalysis based processes: Qlycerol-like units as efficient promoters for dehydrative nucleophilic substitutions of ferrocenylmethanol, Shisodia, S.U., Auricchio, S., Citterio, A., Grassi, M., Sebastiano, R. Tetrahedron

Letters 2014, 55(4), 869-872, DOI: 10.1016/j.tetlet.2013.12.034 44. Significant Enhancement in the Efficiency and Selectivity of Iron-Catalyzed Oxidative Cross-Coupling of Phenols by Fluoroalcohols, Gaster E., Vainer, Y.,

Page 29: List of citations from the Web of Science, Scopus and PoP.exe

29

Regev, A., Narute, S., Sudheendran, K., Werbeloff, A., Shalit, H., Pappo, D. Angew.

Chem. Int. ed. 2015, 54, 4198-4202; DOI: 10.1002/anie.201409694 45. Fluorinated alcohols: A magic medium for the synthesis of heterocyclic compounds, Khaksar, S., J. Fluor. Chem. 2015, 172, 51-61. DOI: 10.1016/j.jfluchem.2015.01.008 46. Iron-Catalyzed Oxidative C-C and C-O Coupling of Halophenols to alpha-Substituted beta-Keto Esters, Regev, Almog; Shalit, Hadas; Pappo, Doron, Synthesis-

Stuttgart 2015, 47, 1716-1725. DOI: 10.1055/s-0034-1380360 47. Synthetic and Predictive Approach to Unsymmetrical Biphenols by Iron-Catalyzed Chelated Radical-Anion Oxidative Coupling, Libman A., Shalit H., Vainer Y., Narute S., Kozuch S., Pappo D. J. Am. Chem. Soc. 2015, 137, 11453-11460. DOI: 10.1021/jacs.5b06494 48. Hydrogen peroxide activation by fluorophilic polyoxotungstates for fast and selective oxygen transfer catalysis, Carraro M., Gardan M., Sartorel A., Maccato C., Bonchio M. Dalton Trans. 2016, 45, 14544-14548. DOI: 10.1039/c6dt01951j 49. Harnessing the Lewis Acidity of HFIP through its Cooperation with a Calcium(II) Salt: Application to the Aza-Piancatelli Reaction, Leboeuf D., Marin L., Michelet B., Perez-Luna A., Guillot R., Schulz E., Gandon V., Chem.-Eur. J. 2016, 45, 16165-16171. DOI: 10.1002/chem.201603592 50. Dual Catalysis for the Aerobic Oxidation of Benzyl Alcohols - Nitric Acid and Fluorinated Alcohol, Mozina, Stefan; Stavber, Stojan; Iskra, Jernej; Eur. J. Org.

Chem. 2017, pp. 448-452. DOI: 10.1002/ejoc.201601339 51. The Catalytic Effect of Fluoroalcohol Mixtures Depends on Domain Formation, Holloczki, O; Berkessel, A; Mars, J; Mezger, M; Wiebe, A; Waldvogel, SR; Kirchner, B; ACS Catal. 2017, 7, 1846-1852. DOI: 10.1021/acscatal.6b03090 52. (Pentamethylcyclopentadienyl)cobalt(III)-Catalyzed C-H Bond Functionalization: From Discovery to Unique Reactivity and Selectivity, Yoshino, Tatsuhiko; Matsunaga, Shigeki; Adv. Synth. Catal. 2017, 359, 1245-1262. DOI: 10.1002/adsc.201700042 53. Selective Aerobic Oxidation of Methylarenes to Benzaldehydes Catalyzed by N-Hydroxyphthalimide and Cobalt(II) Acetate in Hexafluoropropan-2-ol, Gaster, Eden; Kozuch, Sebastian; Pappo, Doron; ANGEWANDTE CHEMIE-INTERNATIONAL EDITION 2017, 56, 5912-5915. DOI: 10.1002/anie.201702511 54. V. Vershinin, A. Dyadyuk, D. Pappo, Iron-catalyzed selective oxidative arylation of phenols and biphenols, Tetrahedron 2017, 73, 3660-3668. https://doi.org/10.1016/j.tet.2017.03.094 (585)

J. Kaneti,* S. Bakalova, and I. Pojarlieff, J. Org. Chem., 2003, 68(17), pp. 6824-6827.

1. Stoyanova, M. P.; Kozekov, I. D.; Palamareva, M. D. J. Heterocycl. Chem.

2003, 40(5), 795-803. 2. Zhang HW, Vogels CM, Wheaton SL, Baerlocher FJ, Decken A, Westcott SA: Synthesis-Stuttgart 2005, 16, 2739-2743. 3. Topal KG, Unaleroglu C, Aviyente V: INTERNATIONAL JOURNAL OF

QUANTUM CHEMISTRY 106 (7): 1596-1610 JUN 2006 4. Masse CE, Ng PY, Fukase Y, Sánchez-Roselló, M., Shaw, J.T. JOURNAL OF

Page 30: List of citations from the Web of Science, Scopus and PoP.exe

30

COMBINATORIAL CHEMISTRY 8 (3): 293-296 MAY 2006 5. Banks, H. D. J. Org. Chem. 2006, 71, 8089-8097. 6. Burdzhiev, N.T., Stanoeva, E.R. Synthesis of new polysubstituted pyrrolidinones with potential biological activity: Zeitschrift fur Naturforschung -

Section B: Journal of Chemical Sciences 2008, 63 (3), pp. 313-320 7. Yosu Vara, Tamara Bello, Eneko Aldaba, Ana Arrieta, José L. Pizarro, María. I Arriortu, Xabier López and Fernando P. Cossío, Org. Letters 2008, 10, 4759-4762, DOI: 10.1021/ol801757r 8. Marcos González-López and Jared T. Shaw, Cyclic Anhydrides in Formal Cycloadditions and Multicomponent Reactions: Chem. Rev., 2009, 109 (1), pp 164–189 9. Matthias Moens, Guido Verniest, Matthias De Schrijver, Peter ten Holte, Jan-Willem Thuring, Frederik Deroose, Norbert De Kimpe, Synthesis of 2-aryl-3-hydroxymethyl-5,5-difluoropiperidines: Tetrahedron 2012, 68, 9284-9288. DOI: 10.1016/ j.tet.2012.08.049

10. Gang Ahn, These: Conception, synthese et evaluation du potentiel antitumoral d‘indenoisoquinoleine-5,11-diones polyfonctionnalisees, Univ. Lille, 2010 11. Ommidala Pattawong, Darlene Q. Tan, James C. Fettinger, Jared T. Shaw, and Paul Ha-Yeon Cheong: Stereocontrol in Asymmetric γ-Lactam Syntheses from Imines

and Cyanosuccinic Anhydrides, Org. Letters 2013, 15(19), 5130-5133; DOI:

10.1021/ol402561q

12. Julia Hong, Zheng Wang, Aaron Levin, Thomas J. Emge, David M. Floyd, Spencer Knapp: Tetrahedron Letters 2015, 56, 3001–3004; DOI: 10.1016/j.tetlet.2014.10.027. 13. Bilgesu Onur Sucu, Nuket Ocal, Ihsan Erden, Direct synthesis of imidazolidin-4-ones via cycloadditions of imines with a Leuchs’ anhydride, Tetr. Lett. 2015, 2590-2592. 14. Cronin, S. A., Collar, A. G., Gundala, S., Cornaggia, C., Torrente, E., Manoni, F., Botte, A., Twamley, B., Connon, S. J. The first catalytic asymmetric cycloadditions of imines with an enolisable anhydride, Org. Biomol. Chem. 2016, 14, 6955-6959; DOI: 10.1039/c6ob00048g 15. Pashev, A. S., Burdzhiev, N. T., Stanoeva, E. R. Synthetic Approaches toward the Benzo[a]quinolizidine System. A Review, ORG. PREP. AND PROC.

INTERNATIONAL, 2016, 48, 425-467. DOI: 10.1080/00304948.2016.1234820 16. Jarvis, C. L., Hirschi, J. S., Vetticatt, M. J., Seidel, D. Catalytic Enantioselective Synthesis of Lactams through Formal [4+2] Cycloaddition of Imines with Homophthalic Anhydride, Angew. Chem, Int. Ed. 2017, 56, 2670-2674. DOI: 10.1002/anie.201612148 17. Stereochemistry and Reactivity of the HPA Imine Mannich Intermediate, Daniel Polyak, Ngan Phung, Jian Liu, Robert Barrows, Thomas J. Emge, and Spencer Knapp, Tetrahedron Lett. 2017, 58, 3879-3883. DOI: 10.1016/j.tetlet.2017.08.070 (602)

Damyanova, B., Momtchilova, S., Bakalova, S., Zuilhof, H., Christie, W.W., Kaneti, J.

Computational probes into the conceptual basis of silver ion chromatography: I. Silver(I) ion complexes of unsaturated fatty acids and esters J. Mol. Structure THEOCHEM 2002, 589-590, pp. 239-249

Page 31: List of citations from the Web of Science, Scopus and PoP.exe

31

1. Rodionov, V.N.; Chernyaev, B.V.; Levandovski, I.A.; Shubina, T.E.; Fokin, A.A. Theor. Exp. Chem. 2005, 41, 1-6.

2. Petkova, N.I., Nikolova, R.D., Bojilova, A.G., Vayssilov, G.N.: International

Journal of Quantum Chemistry 2007, 107(8),1814-1825. 3. Guozhen Zhang, Zhen Hua Li, Wen-Ning Wang, and Kang-Nian Fan: Journal

of Physical Chemistry A 2007, 111 (46), pp. 11894-11903. doi: 10.1021/jp0753169

4. Rafał Fran´ski*, Błaz˙ej Gierczyk, and Tomasz Kozik, Rapid Commun. Mass

Spectrom. 2008; 22: 2747–2749 5. Simultaneous determination of four andrographolides in Andrographis

paniculata Nees by silver ion reversed-phase high-performance liquid chromatography: Xu, T., Pan, J., Zhao, L.: JOURNAL OF

CHROMATOGRAPHIC SCIENCE, 2008, 46 (8), 747-750. 6. J. M. Cardamone, J. J. Martin, Macromol. Symposia 2008, 272(1), 161-166. 7. Levandovskiy IA, Shubina TE, Fokin AA, Computational and QSAR study of

the alkylnaphthyl ketones adsorption on silver-ion stationary phase: JOURNAL OF MOLECULAR MODELING 2010, 16(3), 513-522

8. Ohtaki, N. Chemical Times 2010, 215(1), 19-21. 9. Ioannis N. Lykakis, Carla Ferreri, Stanislav A. Grabovskiy and Chryssostomos

Chatgilialoglu: Separation of cis/trans geometrical fatty acid isomers by silver-exchanged zeolite Y, Tetrahedron, 2010, Volume 66, Issue 12, Pages 2203-2209

10. Adlof, R. O., Recent Advances in Silver-Ion HPLC Utilizing Acetonitrile in Hexane as Solvent, in Lipid Analysis and Lipidomics. NewTechniques and Applications, John K. G. Kramer , Richard E. McDonald , J. Thomas Brenna and Magdi M. Mossoba, Eds., AOCS Publishing 2006, ISBN: 978-1-893997-85-1, DOI: 10.1201/9781439822425.pt3

11. Huong T. Pham, Adam J. Trevitt, Todd W. Mitchell and Stephen J. Blanksby, Rapid differentiation of isomeric lipids by photodissociation mass spectrometry of fatty acid derivatives, Rapid Commun mass spectrometry

2013, 27(7), 805–815; DOI: 10.1002/rcm.6503

(613)

(H) Computational Probes into the Conceptual Basis of Silver Ion Chromatography: II. Silver(I)-Olefin Complexes, KANETI J, DE SMET LCPM, BOOM R, Zuilhof, H.,

Sudhoelter, E.J.R.: JOURNAL OF PHYSICAL CHEMISTRY A 2002, 106 (46): 11197-11204

1. Krossing I, Reisinger A, ANGEW CHEM INT EDIT 2003, 42 (46): 5725-5728 2. Krossing I, Raabe I, ANGEW CHEM INT EDIT 2004, 43 (16): 2066-2090 3. Tai HC, Krossing I, Seth M, et al. ORGANOMETALLICS 2004, 23 (10): 2343-

2349 4. Dias HVR, Wang XY, DALTON TRANSACTIONS 2005 (18): 2985-2987 5. Manard MJ, Kemper PR, Carpenter CJ, et al. INTERNATIONAL JOURNAL

OF MASS SPECTROMETRY 2005, 241 (2-3): 99-108 6. Manard MJ, Kemper PR, Bowers MT, INTERNATIONAL JOURNAL OF

MASS SPECTROMETRY 2005, 241 (2-3): 109-117

Page 32: List of citations from the Web of Science, Scopus and PoP.exe

32

7. Harrowfield J, Matt D, JOURNAL OF INCLUSION PHENOMENA AND

MACROCYCLIC CHEMISTRY 50 (3-4): 133-150 DEC 2004 8. Zambonin CG, Calvano CD, D'Accolti L, RAPID COMMUNICATIONS IN

MASS SPECTROMETRY 20 (2): 325-327 2006 9. Cottam JRA, Steel PJ: JOURNAL OF ORGANOMETALLIC CHEMISTRY

2006, 691 (10): 2286-2290 Sp. Iss. SI MAY 1 10. Burgess J, Cottam JRA, Steel PJ, The silver-alkene interaction as a

supramolecular synthon: Divinylbenzene-based assemblies: AUSTRALIAN

JOURNAL OF CHEMISTRY 2006, 59 (5): 295-297 11. Krossing I, Reisinger A. Chemistry with weakly-coordinating fluorinated

alkoxyaluminate anions: Gas phase cations in condensed phases? COORDINATION CHEMISTRY REVIEWS 2006, 250 (21-22): 2721-2744 Sp. Iss. SI OV

12. Dias HVR, Wu J, Wang XY, Rangan, K. Structural variations of silver ethylene complexes supported by boron-protected fluorinated scorpionates and the isolation of a ligand-directed silver helix: INORGANIC CHEMISTRY 2007, 46 (6): 1960-1962 MAR 19

13. Gogoll, A., Polavarapu, P., Grennberg, H. Enhanced silver ion binding to a rigid bisarene molecular cleft with formation of nonpolar pleated sheets through non-ionic intermolecular forces: Inorganic Chemistry 2007, 46 (13), pp. 5271-5275

14. Buratto, S.K., Bowers, M.T., Metiu, H., Manard, M., Tong, X., Benz, L., Kemper, P., Chrétien, S.: Chapter 4 Aun and Agn (n=1-8) nanocluster catalysts: gas-phase reactivity to deposited structures: Chemical Physics of

Solid Surfaces 2007, 12, pp. 151-199. 15. Rasika Dias, H.V., Wu, J. European Journal of Inorganic Chemistry 2008,

509-522 16. Nikolova-Damyanova, B. Journal of Chromatography A 2009, 1216 (10), pp.

1815-1824. 17. Kazi, Abul B.; Dias, H. V. Rasika; Tekarli, Sammer M.; Morello, Glenn R.;

Cundari, Thomas R. ORGANOMETALLICS 2009, 28, 1826-1831 18. Xu, H., Song, Y.L., Meng, X.R., Hou, H.W., Tang, M.S., Fan, Y.T. Chemical

Physics 2009, 359 (1-3), pp. 101-110 19. Li, Zhen Hua; Liu, Jianliang; Qiao, Minghua; Qiao, Minghua, Mol. Phys.

2009, 107, 1271-1282. 20. Reisinger, A., Trapp, N., Knapp, C., Himmel, D., Breher, F., Rüegger, H.,

Krossing, I. Chemistry - A European Journal 2009, 15 (37), pp. 9505-9520 21. Alagona, G., Ghio, C., Journal of Physical Chemistry A 2009, 113 (52), pp.

15206-15216 22. Tsipis A. C. H. Organometallics 2010, 29, 354-363 23. Andreao PSS, Giacomini RA, Stumbo AM, Waldman WR, Braz R, Ligiero

CBP, Miranda PCML, QUIMICA NOVA 2010, 33, 212-215. 24. Gas-phase CT-stabilized Ag(I) and Zn(II) metal-organic complexes -

Experimental versus theoretical study, Lamshöft, M., Storp, J., Ivanova, B., Spiteller, M.: Polyhedron 2011, 30 (15), pp. 2564-2573

25. Strong nonlinear optical effects from a new polymeric silver(I)-propyl-benzotriazole complex: Xu, Hong; Song, Yinglin; Meng, Xiangru; Hou, Hongwei; Fan, Yaoting, JOURNAL OF APPLIED POLYMER SCIENCE 2012, 125, 682-689, DOI: 10.1002/app.34872

Page 33: List of citations from the Web of Science, Scopus and PoP.exe

33

26. Separation of unsaturated organic compounds using silver-thiolate chromatographic material: Aponte, J.C., Dillon, J.T., Tarozo, R., Huang, Y. Journal of Chromatography A 2012, 1240, 83-89.

27. Strong nonlinear optical effects from a new polymeric silver(I)-propyl- benzotriazole complex: Xu, H., Song, Y., Meng, X., Hou, H., Fan, Y. Journal

of Applied Polymer Science 2012, 125 (1), pp. 682-689 28. A DFT study on the interaction between adsorbed silver on C60 and disulfide

bond: Azizi, K., Sohrabinia, A. Journal of Molecular Graphics and Modelling 2012, 38, 354-359; DOI: 10.1016/j.jmgm.2012.06.003

29. Organometallic Probe for the Electronics of Base-Stabilized Group 11 Metal Cations, Braunschweig, Holger; Ewing, William C.; Kramer, Thomas; Mattock, JD; Vargas, A; Werner, C. CHEMISTRY-A EUROPEAN JOURNAL 2015, 21, 12347-12356. DOI: 10.1002/chem.201500788

(642) Kaneti J, Bakalova SM, Nguyen MT: The ring closure of ethylene phosphites is a new

P(III)-insertion reaction. A computational study: J. MOL. STRUCTURE – THEOCHEM 2003, 633 (1): pp. 35-48

1. D. W. Allen: Tervalent Phosphorus Derivatives, Organophosphorus

Chemistry 2006, 35, 127-168. 2. N.A. Williams, Compounds containing a Spiro Phosphorus Atom, in

Comprehensive Heterocyclic Chemistry III, 2008, Chapter 12.21, Pages 1065-1126

3. Abdrahmanova, L. M. Cyclic P(III) derivatives with electrophilic substituents, Dissertation, Russian Acad. Sci., Kazan, 2008

4. Savostina, L. I. DFT Studies of bimolecular reaction mechanisms of phosphorus compounds, Dissertation, Kazan Tech. Physics Inst., 2008

(646) Synthesis, Electronic Spectra and Conformational Properties of Some N-Substituted

Aza-Crown Ethers, Bakalova S.M., Vladimirova M.P., Stanoeva E., Mitewa M., Kaneti J. (2003) Bulgarian Chemical Commun, 35, pp. 245.

1. Chande, M.S., Mondkar, H.S., Journal of Chemical Research 2008, (7), pp.

402-404 2. Militsina, O. I. Dissertation, Kazan, 2005 3. Bambang Rusdiarso, THE DISTRIBUTION OF COMMERCIAL CROWN

ETHER DC18C6 AND THE EXTRACTION STUDY OF ALKALI AND EARTH ALKALI METALS: Indo. J. Chem., 2007, 7 (2), 160-165

P. S. Denkova, V. S. Dimitrov, S. M. Bakalova, Jose Kaneti, K. Danov, Magn. Res. Chem., 2003, 41(12), 989-995.

Page 34: List of citations from the Web of Science, Scopus and PoP.exe

34

1. R. Ludwig: Nuclear Spin Relaxation in Liquids and Gases..., ed. G. A. Webb, Specialist Periodical Reports, RSC 2005, 34, 217-252 (650)

(H) Kaneti J, Kirby AJ, Koedjikov AH, Pojarlieff, I.G. Thorpe-Ingold effects in cyclizations to five-membered and six-membered rings

containing planar segments. The rearrangement of N(1)-alkyl-substituted dihydroorotic acids to hydantoinacetic acids in base : ORGANIC &

BIOMOLECULAR CHEMISTRY 2004, 2 (7): 1098-1103

1. Yamamoto Y, Saigoku T, Nishiyama H, Takashige Ohgai and Kenji Itoh: Selective synthesis of C-arylglycosides via Cp*RuCl-catalyzed partially intramolecular cyclotrimerizations of C-alkynyl glycosides: ORGANIC & BIOMOLECULAR CHEMISTRY 2005, 3 (9): 1768-1775

2. Yamamoto Y, Kinpara K, Saigoku F, Hideyuki Takagishi, Satoshi Okuda, Hisao Nishiyama, and Kenji Itoh: Cp*RuCl-catalyzed [2+2+2] cycloadditions of alpha,omega-diynes with electron-deficient carbon-heteroatom multiple bonds leading to heterocycles: JOURNAL OF THE AMERICAN CHEMICAL SOCIETY 2005, 127 (2): 605-613

3. Dalby K.N., in Reaction mechanisms: Part (ii) polar reactions. Annual Reports on the Progress of Chemistry 2005- Section B 101, pp. 264-283.

4. Daniela Ulmer, Dissertation, Wurzburg, 2006, Piperidinederivate mit biologische Aktivitaet, p.52

5. Berndt Nosse, Dissertation, Regensburg, 2004, Enantioselektive Synthese mono- und tricyclische Naturstoffe.

6. von Zezschwitz, P., de Meijere, A., Domino Heck-pericyclic reactions, Topics in Organometallic Chemistry 2006, 19, pp. 49-89.

7. Smith, D. M.; Pulling, M. E.; Norton, J. R. J. Am. Chem. Soc. 2007, 129(4), 770-771.

8. Tong Wu, Cobalt Mediated Cyclotrimerization of Alkyne and Isocyanate to Form 2-Pyridones; New Linkage Chemistry for RNA Mediated Nanoparticle Growth on Gold Surface, Graduate Faculty of North Carolina State University, Degree of Doctor of Philosophy, 2006

9. H. Ibisoglu, F. Hacivelioglu, A. Kilic, Heterocycles, 75 (4), 839-846, 2008 10. S.L. Rumble, The synthesis of amines and imines using organometallic

catalysts, Ph. D. Thesis, p. 70. University of New South Wales, Sydney, 2005. 11. Synthese von Organotitan-Verbindungen mit Monosaccharid-Liganden und

erste Untersuchungen zur Reaktivität: Dissertation zur Erlangung des Doktorgrades des Departments Chemie der Universität Hamburg, Daniela

Zeysing, Institut für Anorganische und Angewandte Chemie, Universität Hamburg 2008

12. Choi, J., Pulling, M.E., Smith, D.M., Norton, J.R. Journal of the American

Chemical Society 2008, 130 (13), pp. 4250-4252 13. Alker, A.M., Grillet, F., Malherbe, P., Norcross, R.D., Thomas, A.W.,

Masciadri, R. Synthetic Communications 2008, 38, 3398-3405 14. Hartung, J., Pulling, M.E., Smith, D.M., Yang, D.X., Norton, J. Tetrahedron

2008, 64 (52), pp. 11822-11830 15. Gonzalez-Rodriguez C, Escalante L, Varela JA, Castedo L, Saa C. ORGANIC

LETTERS 2009, 11, 1531-1533

Page 35: List of citations from the Web of Science, Scopus and PoP.exe

35

16. Portela-Cubillo, F., Alonso-Ruiz, R., Sampedro, D., Walton, J.C. Journal of

Physical Chemistry A 2009, 113 (37), pp. 10005-10012. 17. Várela-Fernández, A., González-Rodríguez, C., Varela, J.A., Castedo, L., Saá,

C. Organic Letters 2009, 11 (22), pp. 5350-5353 18. Valdersnes S, Sydnes LK, EUROPEAN JOURNAL OF ORGANIC

CHEMISTRY 2009, 5816-5831 19. Yeh, M.-C. P.; Lin, M.-N.; Chang, W.-J.; Liou, J.-L.; Shih, Y.-F. J. Org.

Chem. 2010, 75, 6031-6034 20. Uslu, A., Coles, S.J., Davies, D.B., Esen, M., Hursthouse, M.B., Kiliĉ, A.

Inorganica Chimica Acta 2010, 363 (13), pp. 3506-3515. 21. O'Dwyer EE, Mullane NS, Smyth TP, JOURNAL OF HETEROCYCLIC

CHEMISTRY 2011, 48(2), 286-294 22. Intramolecular hydroamination of aminoalkenes using rhodium(I) and

Iridium(I) complexes with N,N-and P,N-donor ligands; Nguyen, T.O., Man, B.Y.-W., Hodgson, R., Messerle, B.A.: Australian Journal of Chemistry 2011,

64 (6), pp. 741-746 23. Thorpe-Ingold effect in the reaction of vicinal amino primary alcohol

hydrogen sulfates and carbon disulfide, Chen, N., Huang, Z., Zhou, C., Xu, J.: Tetrahedron 2011, 67 (41), pp. 7971-7976

24. Ligand acceleration in ZnI 2-catalyzed intramolecular hydroamination of unfunctionalized olefins: Liu, G.-Q., Li, W., Wang, Y.-M., Ding, Z.-Y., Li, Y.-M. Tetrahedron Letters 2012, 53 (33) , pp. 4393-4396

25. A convenient synthesis of difficult medium-sized cyclic peptides by Staudinger mediated ring-closure: Ha, K., Monbaliu, J.-C.M., Williams, B.C., Pillai, G.G., Ocampo, C.E., Zeller, M., Stevens, C.V., Katritzky, A.R. Organic

and Biomolecular Chemistry 2012, 10 (40) , pp. 8055-8058 26. Unprecedented N/C[1,4] Boc migration: synthesis of 3-carboxyl

functionalized 7-azaindolo[2,1-c][1,4]benzoxazine ring system: Santosh Kurhade, Parimi Atchuta Ramaiah, Philip Prathipati, Debnath Bhuniya, Tetrahedron 2013, 69, 1354-1362. http://dx.doi.org/10.1016/j.tet.2012.11.073

27. Governing parameters of long-range intramolecular S -to- N acyl transfers within (S)-acyl isopeptides: Monbaliu, J.-C.M., Dive, G., Stevens, C.V., Katritzky, A.R. Journal of Chemical Theory and Computation 2013, 9(2), 927-934. dx.doi.org/10.1021/ct300830k

28. Trifluoroacetic acid-promoted intramolecular hydroamination of unfunctionalized olefins bearing electron-rich amino groups, Liu, G.-Q., Cui, B., Sun, H., Li, Y.-M. Tetrahedron 2014 (35), 5696-5703, DOI: 10.1016/j.tet.2014.06.061.

29. Cooperative effect in organocatalytic intramolecular hydroamination of unfunctionalized olefins, Wang, Y.-M., Li, T.-T., Liu, G.-Q., Zhang, L., Duan, L., Li, L. Li, Y.-M. RSC Advances 2014, 4 (19), 9517-9521, DOI: 10.1039/c3ra47060a

30. From diketopiperazines to hydantoins: An unprecedented rearrangement, Chaubet, G., Cazals, G., Lebrun, A., Martinez, J., Parrot, I. Synlett 2014, 25(4), Article number ST-2013-D1040-L, 574-578. DOI: 10.1055/s-0033-1340622

31. Zheng, Y., Xu, J., Progress in Chemistry, 26, 2014, 1471-1491. Thorpe-ingold effect and its application in cyclizations in organic chemistry.

32. Fujita, S., Abe, M.,Shibuya, M. ,Yamamoto, Y. Organic Letters, 17, 2015, 3822-3825. Intramolecular Hydroalkoxylation of Unactivated Alkenes Using Silane-Iodine Catalytic System.

Page 36: List of citations from the Web of Science, Scopus and PoP.exe

36

33. Li, T.-T., Liu, G.-Q.,Wang, Y.-M., Cui, B., Sun, H., Li, Y.-M. Tetrahedron 71, 2015, 7003-7009. The effect of hydrogen bond on Brønsted acid-catalyzed intramolecular hydroamination of unfunctionalized olefins

34. López-Reyes, M.E.,Toscano, R.A.,López-Cortés, J.G., Alvarez-Toledano, C. Asian J. Org. Chem. 4, 2015, 545-551. Fast and Efficient Synthesis of Z-Enol-γ-Lactones through a Cycloisomerization Reaction of β-Hydroxy-γ-Alkynoic Acids Catalyzed by Copper(I) under Microwave Heating in Water

35. Baxendale, I.R., Chemical Engineering and Technology, 38, Issue 10, 2015, 1713-1716. A Short Multistep Flow Synthesis of a Potential Spirocyclic Fragrance Component.

36. Yang, C.-H., Fan, W.-W., Liu, G.-Q., Duan, L., Li, L., Li, Y.-M. RSC

Advances 5, 2015, 61081-61093. On the understanding of BF3•Et2O-promoted intra- and intermolecular amination and oxygenation of unfunctionalized olefins

37. Yang, C.-H., Zhang, Y.-S., Fan, W.-W., Liu, G.-Q. , Li, Y.-M., Angewandte -

International Edition, Intramolecular aminoboration of unfunctionalized olefins, 54, 2015,12636-12639

38. Sun, H., Cui, B., Liu, G.-Q., Li, Y.-M., MnI2-catalyzed regioselective intramolecular iodoamination of unfunctionalized olefins, Tetrahedron 2016, 72, 7170 – 7178.

(688)

(H) Electronic Absorption and Emission Spectra and Computational Studies of Some 2-Aryl, 2-Styryl, and 2-(4’-Aryl)Butadienyl Quinazolin-4-ones: S. Bakalova, A.

Gil Santos, I. Timcheva, J. Kaneti, I. Filipova, G. Dobrikov, and V. D. Dimitrov, J. Mol. Struct. THEOCHEM 2004, 710(1-3), 229-234.

1. Etaiw, S. El-D. H.; Fayed, T. A.; Saleh, N. Z. J. Photochem. Photobiol. A

2006, 177, 238-247. 2. FT-IR, FT-Raman and DFT calculations of 3-{[(4-fluorophenyl) methylene]

amino}-2-phenylquinazolin-4(3H)-one, C. Yohannan Panicker, K. R. Ambujakshan, Hema Teresa Varghese, Samuel Mathew, Subarna Ganguli, Ashis Kumar Nanda and Christian Van Alsenoy: Journal of Raman

Spectroscopy 2009, 40(5), 527-536

3. FT-IR and FT-Raman spectra and ab initio calculations of 3-{[(2-hydroxyphenyl)methylene]amino}-2-phenylquinazolin-4(3H)-one: Yohannan Panicker, C., Varghese, H.T., Ambujakshan, K.R., Mathew, S., Ganguli, S., Nanda, A.K., van Alsenoy, C. Journal of Raman Spectroscopy 2009, 40 (9), pp. 1262-1273

4. Panicker CY, Varghese HT, Thansani T, TURKISH JOURNAL OF

CHEMISTRY 2009, 33, 633-646 5. Panicker, C.Y., Varghese, H.T., Ambujakshan, K.R., Mathew, S., Ganguli, S.,

Nanda, A.K., Van Alsenoy, C., Mary, Y.S., Journal of Molecular Structure

2010, 963 (2-3), pp. 137-144 6. Turgunov, K., Shomurotova, S., Mukhamedov, N., Tashkhodjaev, B. Acta

Crystallographica Section E: Structure Reports Online 2010, 66 (12), pp. m1680

Page 37: List of citations from the Web of Science, Scopus and PoP.exe

37

7. Synthesis and photophysical properties of 2-Styrylquinazolin-4-ones Trashakhova, T.V., Nosova, E.V., Valova, M.S., Slepukhin, P.A., Lipunova, G.N., Charushin, V.N. 2011 Russian Journal of Organic Chemistry 47 (5), pp. 753-761

8. Sumita Naskar, Subhendu Naskar, Alexander J. Blake, Haregewine Tadesse, Shyamal Kumar Chattopadhyay: J Chem Crystallogr 2011, 41, pp. 986–990

9. Fluorine-containing quinoline and quinoxaline styryl derivatives: synthesis and photophysical properties, Nosova, E. V., Trashakhova, T. V., Ustyugov, V. S., Mochul'skaya, N. N., Valova, M. S., Lipunova, G. N., Charushin, V. N. RUSSIAN CHEMICAL BULLETIN, 2011, 60(5), 942-947, DOI: 10.1007/s11172-011-0148-1

10. Azinylarylethenes: synthesis and photophysical and photochemical properties, Lipunova, G. N., Nosova, E. V. Trashakhova, T. V., Charushin, V. N. RUSSIAN CHEMICAL REVIEWS 2011, 80(11), 1115-1133, DOI: 10.1070/RC2011v080n11ABEH004234

11. Naskar, Sumita; Naskar, Subhendu; Blake, Alexander J.; Tadesse, Haregewine; Chattopadhyay, Shyamal Kumar: JOURNAL OF CHEMICAL CRYSTALLOGRAPHY 2011, 41(7) , 986-990

12. Y. Sheena Mary, K. Raju, Ilkay Yildiz, Ozlem Temiz-Arpaci, Helena I.S. Nogueira, Carlos M. Granadeiro, Christian Van Alsenoy, FT-IR, FT-Raman,

SERS and computational study of 5-ethylsulphonyl-2-(o-chlorobenzyl)

benzoxazole: Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 2012, 96, 617-625, DOI: 10.1016/j.saa.2012.07.006

13. Chavonda J. Mills, Nelly N. Mateeva, Kinfe K. Redda, Synthesis of novel substituted flavonoids: Journal of Heterocyclic Chemistry, 2006, 43, 59-64, DOI: 10.1002/jhet.5570430109

14. Emiliya V. Nosova, Tatyana V. Stupina, Galina N. Lipunova, Marina S. Valova, Pavel A. Slepukhin, Valery N. Charushin: 3-Phenyl/Pyridinyl Derivatives of

Trans-2-(aryl/heteryl)vinyl-3H-quinazolin-4-ones: Synthesis and Fluorescent

Properties, International Journal of Organic Chemistry, 2012, 2, 56-63; doi:10.4236 /ijoc.2012.21010

15. Memarian, H.R., Ebrahimi, S. Light induced oxidation of 2,3-dihydroquinazolin-4(1H)-ones, Journal of Photochemistry and Photobiology A: Chemistry 2013, 271, pp. 8-15; DOI: 10.1016/j.jphotochem.2013.07.008

16. Tomy Joseph, Hema Teresa Varghese,C. Yohannan Panicker, K. Viswanathan, Martin Dolezal,Christian Van Alsenoy: Spectroscopic (FT-IR, FT-Raman), first order hyperpolarizability, NBO analysis, HOMO and LUMO analysis of N-[(4-(trifluoromethyl)phenyl]pyrazine-2-carboxamide by density functional methods, Arab. J. Chem. 2013, in press, DOI: 10.1016/j.arabjc.2013.08.004

17. M. M. Mmonwa, M. J. Mphahlele, M. M. El-Hendawy, A. M. El-Nahas, N. Koga, Synthesis and Photophysical Properties of the 2-(3-(2-Alkyl-6,8-diaryl-4-oxo-1,2,3,4-tetrahydroquinazolin-2-yl) propyl)-6,8-diarylquinazolin-4(3H)-ones, Molecules 2014, 19, 9712-9735; doi:10.3390/molecules19079712, ISSN 1420-3049.

18. J. Likose, C. Y. Panicker , P. S. Nayak, B. Narayana, B. K. Sarojini, C. Van Alsenoy, A. A. Al-Saadi, Synthesis, structural and vibrational investigation on 2-phenyl-N-(pyrazin-2-yl)acetamide combining XRD diffraction, FT-IR and NMR spectroscopies with DFT calculations, Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2015, 135, 608 – 616. DOI: 10.1016/j.saa.2014.07.004.

Page 38: List of citations from the Web of Science, Scopus and PoP.exe

38

19. Photophysical properties of 2,3-dihydroquinazolin-4(1H)-one derivatives, Cabrera-Rivera, F.A., Escalante, J., Morales-Rojas, H., Zigler, D.F., Schmidt, R.D., Jarocha, L.E., Forbes, M.D.E. Journal of Photochemistry and Photobiology A: Chemistry, volume 294, 2014, pp. 31 - 37

20. Spectroscopic (FT-IR, FT-Raman), first order hyperpolarizability, NBO analysis, HOMO and LUMO analysis of 5-tert-Butyl-6-chloro-N-[(4-(trifluoromethyl) phenyl]pyrazine-2-carboxamide, Bhagyasree, J.B., Varghese, H.T., Panicker, C.Y., Van Alsenoy, C., Al-Saadi, A.A., Dolezal, M., Samuel, J. Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy 2015, 137, 193-206, DOI: 10.1016/j.saa.2014.08.104

21. S.H. Rosline Sebastian, Monirah A. Al-Alshaikh, Ali A. El-Emam, C. Yohannan Panicker, Jan Zitko, Martin Dolezal, C. Van Alsenoy, Spectroscopic, quantum chemical studies, Fukui functions, in vitro antiviral activity and molecular docking of 5-chloro-N-(3-nitrophenyl)pyrazine-2-carboxamide, Journal of Molecular Structure 2016, 1119, 188-199. DOI: 0.1016/j.molstruc.2016.04.088

22. P. Shankaraiah, S. Veeresham, and A. K. D. Bhavani, Kumada Cross Coupling Reaction Based Synthesis, Antimicrobial and Computational Studies of 6-Aryl-2-phenyl-3-methylquinazolin-4(3H)-ones, Russian Journal of General Chemistry, 2016, 86 (2), 368–375. ISSN 1070-3632.

23. Beegum, S., Mary, Y. Sheena, Varghese, H. T., Panicker, C. Y., Armakovic, S., Armakovic, Sanja J., Zitko, J., Dolezal, M., Van Alsenoy, C. Vibrational spectroscopic analysis of cyanopyrazine-2-carboxamide derivatives and investigation of their reactive properties by DFT calculations and molecular dynamics simulations, Journal of Molecular Structure, 2017, 1131, 1-15; DOI: 10.1016/j.molstruc.2016.11.044

24. Murthy, P.K., Sheena Mary, Y., Shyma Mary, Y., Panicker, C.Y., Suneetha, V., Armakovic, S., Armakovic, S.J., Van Alsenoy, C., Suchetan, P.A Synthesis, crystal structure analysis, spectral investigations, DFT computations and molecular dynamics and docking study of 4-benzyl-5-oxomorpholine-3-carbamide, a potential bioactive agent. Journal of Molecular Structure, 2017, 1134, 25 – 39; DOI: 10.1016/j.molstruc.2016.12.037

25. Ovchinnikova, I.G., Kim, G.A., Matochkina, E.G., Kodess, M.I., Slepukhin, P.A., Kovalev, I.S., Nosova, E.V., Rusinov, G.L., Charushin, V.N., Synthesis, photochemical and luminescent properties of ortho-hydroxy styryl quinazolinone-linked benzocrown ethers, Journal of Photochemistry and

Photobiology A: Chemistry 2018, 351, 16-28. (713) Phenylacetyl arylamides as probes for the stereoselectivity of penicillin acylase from

E.coli. Kinetic studies and molecular modelling: M. Guncheva, I. Ivanov, B. Galunsky, N. Stambolieva, J. Kaneti: Eur. J. Biochem. 2004, 271, 2272-2279

1. Antonio Lavecchia, Sandro Cosconati, Ettore Novellino, Enrica Calleri, Caterina Temporini, Gabriella Massolini, Giuseppe Carbonara, Giuseppe Fracchiolla and Fulvio Loiodice: Exploring the molecular basis of the enantioselective binding of penicillin G acylase towards a series of 2-

Page 39: List of citations from the Web of Science, Scopus and PoP.exe

39

aryloxyalkanoic acids: A docking and molecular dynamics study, Journal of

Molecular Graphics and Modelling 2007, 25(6), 773-783; doi: 10. 1016/j.jmgm.2006.07.001

2. Ilyina, A.D., Ibarra-Coronado, D., Gurumurthy, K., Cerda-Ramarez, F., Vestnik Moskovskogo Universiteta Seriya 2 Khimiya, 2006, 47 (2), pp. 134-142.

3. Estruch, I., Tagliani, A.R., Guisán, J.M., Fernández-Lafuente, R., Alcántara, A.R., Toma, L., Terreni, M., Enzyme and Microbial Technology 2008, 42 (2), pp. 121-129.

4. Massolini, G., Temporini, C., Calleri, E. Journal of Chromatography B:

Analytical Technologies in the Biomedical and Life Sciences 2008, 875 (1), 20-29

5. Wang, P.-Y., Tsai, S.-W., Chen, T.-L. Biotechnology and Bioengineering

2008, 101 (3), 460-469. 6. Anisimov, V.M.; Bugaenko, V. L. J. Computat. Chemistry 2009, 30(5), 784-

798. 7. Wang,P.-Y.; Tsai, S.-W. J.Taiwan Inst.Chem.Eng. 2009, 40(4), 364-370 8. Valeria Miranda, Lorena Wilson, Constanza Cárdenas and Andrés Illanes,

Journal of Molecular Catalysis B: Enzymatic, Volume 68, Issue 1, January 2011, Pages 77-82

9. C. Elso M. Cruz Cruz, Eslhey Sánchez Domínguez, Calculation of the molecular properties of five cephalosporins: cephradine, cephalexin, cefadroxil, cefprozil and ceftobiprole, Revista Electrónica de las Ciencias Médicas en Cienfuegos, ISSN:1727-

897X, Medisur 2010; 8(5), 17-25 10. Maduro, Filipa Cristiana Duarte Fangueiro, PhD Thesis, Universidade do

Algarve, 2009: http://hdl.handle.net/10400.1/785 11. Grulich, Michal; Štěpánek, Václav; Kyslík, Pavel: Perspectives and industrial

potential of PGA selectivity and promiscuity, Biotechnology Advances, 2013, 31 (8), 1458-1472; DOI: 10.1016/j.biotechadv.2013.07.005

(724)

(H) Convenient synthesis of some 2-substituted 4(3H)-quinazolinone derivatives:I. Philipova*, G. Dobrikov, K. Krumova, J. Kaneti,

J. Heterocycl. Chem. 2006, 43, 1057-1063.

1. Dabiri, M.; Baghbanzadeh, M.; Delbari, A. S.: J. Combinatorial Chem. 2008, 10(5), 700-703.

2. Baghbanzadeh, Mostafa; Molnar, Maja; Damm, Markus; Reidlinger, Claudia; Dabiri, Minoo; Kappe, C. Oliver, J. Combinatorial Chem. 2009, 11(4), 676-684

3. Smith K, El-Hiti GA, Hegazy AS, Unexpected Variations in Sites of Lithiation of N-(2-Methoxybenzyl)-pivalamide: SYNLETT 2009, 14, 2242-2244.

4. Deligeorgiev T. (Deligeorgiev, Todor), Vasilev A (Vasilev, Aleksey), Kaloyanova S (Kaloyanova, Stefka), Vaquero JJ (Vaquero, Juan J.): COLORATION TECHNOLOGY 2010, 126, 55-80

5. Smith K, El-Hiti GA, Hegazy AS, Fekri A, Kariuki BM, ARKIVOC 2009, Part 14, 266-300.

6. Schmid, M., Waldner, B., Schnürch, M., Mihovilovic, M.D., Stanetty, P., Studying competitive lithiations at alpha-, ortho-, and benzylic positions in

Page 40: List of citations from the Web of Science, Scopus and PoP.exe

40

various N-protected aniline derivatives, Tetrahedron 2011, 67(16), 2895-2904. DOI: 10.1016/j.tet.2011.02.056

7. Jagani, CL (Jagani, Chandresh L.); Sojitra, NA (Sojitra, Natvar A.); Vanparia, SF (Vanparia, Satish F.)1; Patel, TS (Patel, Tarosh S.)1; Dixit, RB (Dixit, Ritu B.); Dixit, BC (Dixit, Bharat C.): A convergent microwave assisted synthesis of 4-amino-N-(4-oxo2-substituted-4H-quinazolin-3-yl)benzenesulfonamide derivatives, ARKIVOC Pages: 221-U767 Part: Part 9 Published: 2011

8. Azinylarylethenes: synthesis and photophysical and photochemical properties, Lipunova, G. N. Nosova, E. V. Trashakhova, T. V., Charushin, V. N. RUSSIAN CHEMICAL REVIEWS 2011, 80(11), 1115-1133, DOI: 10.1070/RC2011v080n11ABEH004234

9. Synthesis of some new 2,3-disubstituted-4(3H)quinazolinone derivatives: Hassanzadeh, F., Rahmani Khajouei, M., Hakimelahi, G.H., Jafari, E., Khodarahmi, G.A. Research in Pharmaceutical Sciences 2012, 7(1), pp. 23-30.

10. Reactions of organolithium reagents with quinazoline derivatives: El-Hiti, G.A., Hegazy, A.S., Alotaibi, M.H., Ajarim, M.D. ARKIVOC 2012 (7) , pp. 35-78

11. Microwave promoted synthesis and antimicrobial activity of 3-thiazole substituted 2-styryl-4(3H)-quinazolinone derivatives: Jagani, C.L., Sojitra, N.A., Vanparia, S.F., Patel, T.S., Dixit, R.B., Dixit, B.C. Journal of Saudi

Chemical Society 2012, 16 (4) , pp. 363-369 12. PEG-600-mediated, green and efficient, tandem syntheses of N-subtituted-2-

styrylquinazolin-4- ones, Srinivasa Reddy, B., Naidu, A., Dubey, P.K. Green

Chemistry Letters and Reviews 2013, 6 (3), pp. 254-261. DOI: 10.1080/ 17518253.2012.742142

13. Design, synthesis, and antibacterial activity of novel Schiff base derivatives of quinazolin-4(3H)-one, Wang, Xiang; Yin, Juan; Shi, Li; et al. EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY 2014, 77, 65-74. http://dx.doi.org/10.1016/j.ejmech.2014.02.053

14. Synthesis of New 2-(N'-Allylidene-hydrazino) quinazolinones and 2-(4,5-Dihydropyrazolyl)-quinazolinones and Their Antimicrobial and Antifungal Activity Screening, Saygili, Nezire; Ekizoglu, Melike; Erdogdu, Ceren, ASIAN JOURNAL OF CHEMISTRY 2014, 26, 3197-3203.

15. Convenient synthesis of 2,3-disubstituted quinazolin-4(3H)-ones and 2-styryl-3-substituted quinazolin-4(3H)-ones: applications towards the synthesis of drugs, Kumar, Dinesh; Jadhavar, Pradeep S.; Nautiyal, Manesh; et al. RSC Advances, 2015, 5, 30819-30825. DOI: 10.1039/C5RA03888J

16. Synthesis, Biological Evaluation and Molecular Docking Studies of 6-Aryl-2-Styrylquinazolin-4(3H)-Ones, Agbo, Emmanuel Ndubuisi; Makhafola, Tshepiso Jan; Choong, Yee Siew; et al. MOLECULES 2016, 21, 28. doi:10.3390/molecules21010028

17. Synthesis and cytotoxicity evaluation of some new 6-nitro derivatives of thiazole-containing 4-(3H)-quinazolinone, Hosseinzadeh, Leila; Aliabadi, Alireza; Kalantari, Masoud; et al. RESEARCH IN PHARMACEUTICAL SCIENCES 2016, 11, 210-218

18. A Palladium-Catalyzed Method for the Synthesis of 2-(alpha-Styryl)-2,3-dihydroquinazolin-4-ones and 3-(alpha-Styryl)-3,4-dihydro-1,2,4-benzothiadiazine-1,1-dioxide: Access to 2-(alpha-Styryl)quinazolin-4(3H)-ones and 3-(alpha-StyryI)-1,2,4-benzothiadiazine-1,1-dioxides, Kundu,

Page 41: List of citations from the Web of Science, Scopus and PoP.exe

41

Priyanka; Mondal, Amrita; Chowdhury, Chinmay, J. Org. Chem. 2016, 81, 6596-6608.

19. L. Hosseinzadeh, A. Aliabadi, M. Rahnama, H. M. M. Sadeghi, M. R. Khajouei, Synthesis and cytotoxic evaluation of some new 3-(2-(2-phenylthiazol-4-yl) ethyl)-quinazolin-4(3H) one derivatives with potential anticancer effects, Res. Pharm. Sci. 2017, 12, 290-298. DOI: 10.4103/1735-5362.212046

(743)

Origins of Stereoselectivity in the Diels – Alder Addition of Chiral Hydroxyalkyl Vinyl Ketones to Cyclopentadiene: A Quantitative Computational Study”, Bakalova,

S. M.; Kaneti, J. J. Phys. Chem. A, 2008, 112(50), 13006-13016

1. Yu-hong Lam, Paul Ha-Yeon Cheong, Jose M. Blasco Mata, Steven J. Stanway, Veronique Gouverneur, and K. N. Houk: J. Am. Chem. Soc., 2009, 131 (5), 1947-1957

2. Linder M, Brinck T, Org. Biomol. Chem. 2009, 7, 1304-1311. 3. Larkin, Susan M.; Vreven, Thom; Bearpark, Michael J.; Morokuma, Keiji,

Can. J. Chem. 2009, 87(7), 872-879. 4. DENG Ping, ZHANG Hai-Dong, JIANG Jun-Hao, JIANG Qi-Hua, JOURNAL OF

ATOMIC AND MOLECULAR PHYSICS, 2009, 26(5), DOI: 10.3969/j.issn.1000-0364.2009.05.008

5. Abaidullina, D. I., IR spectroscopy and thermochemistry of inter- and intramolecular phenol hydrogen bonds, Dissertation, Kazan Federal University, 2012

6. Akshai Kumar, A. G. Samuelson, Computational tools for mechanistic discrimination..., J. Chem. Sci. 2012, 124, 1343-1352. Indian Acad. Sci. ISSN: 0253-4134; Springer 0974-3626 (print), 0973-7103 (online)

7. Yongge Qiu, Substituent effects in the Diels–Alder reactions of butadienes, cyclopentadienes, furans and pyroles with maleic anhydride, Journal of Physical Organic Chemistry 2015, 28, 370–376. DOI: 10.1002/poc.342

8. Chung, Lung Wa; Sameera, W. M. C.; Ramozzi, Romain; Page, Alister J.; Hatanaka, Miho; Petrova, Galina P.; Harris, Travis V.; Li, Xin; Ke, Zhuofeng; Liu, Fengyi; Liu, Fengyi; Ding, Lina; Morokuma, Keiji; Chem. Reviews 2015, 115, 5678-5796, Special issue. DOI: 10.1021/cr5004419

9. Y. Zuo, Z. Su, Y. Wang, C. Hu, Theoretical study on the mechanism and selectivity of asymmetric cycloaddition reactions of 3-vinylindole catalyzed by chiral N,N'-dioxide-Ni(II) complex, Catalysis Today 2017, 298, 130-137; https://doi.org/10.1016/j.cattod.2017.05.042

(752) Solvent Induced Shifts of Electronic Spectra. IV. Computational study on PRODAN Fluorescence and Implications Regarding the Excited State Structure,Bakalova, S.

M.; Kaneti, J. Spectrochimica Acta - Part A: Molecular and Biomolecular

Spectroscopy, 2009, 72 (1), pp. 36-40.

1. Adhikary, R., Barnes, C.A., Petrich, J.W. Journal of Physical Chemistry B 2009, 113 (35), pp. 11999-12004

Page 42: List of citations from the Web of Science, Scopus and PoP.exe

42

2. Renata K. Everett, H. A. Ashley Nguyen, and Christopher J. Abelt, Does PRODAN

Possess an O-TICT Excited State? Synthesis and Properties of Two

Constrained Derivatives: J. Phys. Chem. A 2010, 114, 4946–4950 3. Christopher J. Abelt,* Tao Sun and Renata K. Everett, 2,5-PRODAN:

Synthesis and properties, Photochem. Photobiol. Sci. 2011, 10, 618-622. 4. Yadav, M.K., Sharma, B., Sharma, G. Der Pharma Chemica 2011, 3 (2), pp.

59-65 5. Optical characterization of Prodan aggregates in water medium, Vequi-

Suplicy, C.C., Coutinho, K., Teresa Lamy, M.: Physical Chemistry Chemical

Physics 2013, 15 (28) , pp. 11800-11807. DOI: 10.1039/c3cp51776d 6. Katharina Krause, Thomas Bredow: Conductor-like screening model for

relaxed excited states: Implementation in the semiempirical method MSINDO, Journal of Computational Chemistry 2014, 35(7), pp. 553 - 564; DOI:10.1002/jcc.23519.

7. Katarzyna Nowak, A solvatochromic study of N-[4-(9-acridinylamino)-3-methoxyphenyl] methanesulfonamide hydrochloride: An experimental and theoretical approach, Spectrochim. Acta A 2014, 130, 208-213. http://dx.doi.org/10.1016/j.saa.2014.03.004

8. Arthur Yanichev, A Theoretical Study of the Nature of 3-Amidino-2-bromobenz-anthrone Abnormally High Stokes Shift, 8-th Paul Walden Symposium on Organic Chemistry, Riga, May 13–14, 2013.

9. Katharina Krause and Thomas Bredow, Conductor-like screening model for relaxed excited states: Implementation in the semiempirical method MSINDO, Journal of Computational Chemistry 2014, 35(7), 553-564.

10. Zachary L. Terranova, Exploring the Structure and Dynamics of Ionic Liquids Using Molecular Dynamics, PhD Dissertation, Univ. Notre Dame, Indiana, USA, 2014-03-11.

(762) Correlated MO Study of the Low Barrier Intramolecular Motions in Donor-Acceptor

Ethenes (MCSCF/MCQDPT2 calculations of donor-acceptor ethenes: thermal intersystem crossings and conformational analysis): Snezhana M. Bakalova, Luis

Manuel Frutos, Jose Kaneti,* and Obis Castano: J. Phys. Chem. A 2005, 109, 10388-10395.

1. Ababneh-Khasawneh, M., Fortier-Mcgill, B.E., Occhionorelli, M.E., Bain,

A.D. 2011, Journal of Physical Chemistry A 115 (26), pp. 7531-7537 2. M. Radoicic, Z. Saponjic, I.A. Jankovic, G.Ciric, Marjanovic, S.P. Ahrenkiel,

M.I. Comor, Improvements to the photocatalytic efficiency of polyaniline modified TiO nanoparticles, Applied Catalysis B, Environmental, 2013, 136-

137, pp. 133-139. doi:10.1016/j.apcatb.2013.01.007

(764)

Page 43: List of citations from the Web of Science, Scopus and PoP.exe

43

Design and Photophysical Properties of a New Molecule with a N-B-N Linked Chromophore: Snezhana Bakalova, Francisco Mendicuti, Obis Castaño, and Jose

Kaneti, Chemical Physics Letters 2009, 478, 206–210.

1. Revisiting the Optical Signatures of BODIPY with Ab Initio Tools, Siwar Chibani, Boris Le Guennic, Azzam Charaf-Eddin, Adele Laurent and Denis Jacquemin: Chem. Sci., 2013, 4 (5) , pp. 1950-1963; DOI:

10.1039/C3SC22265A 2. The NBO Pattern in Luminescent Chromophores: Unravelling Excited-State

Features with TD-DFT, Boris Le Guennic , Siwar Chibani , Azzam Charaf-Eddin, Julien Massue, Raymond Ziessel, Gilles Ulrich and Denis Jacquemin: Phys. Chem. Chem. Phys., 2013, 15 (20) , pp. 7534-7540; DOI: 10.1039/ C3CP50669J

3. Boranil and related NBO dyes: Insights from theory, Chibani, S., Charaf-Eddin, A., Le Guennic, B., Jacquemin, D.: Journal of Chemical Theory and

Computation 2013, 9 (7), pp. 3127-3135. DOI: 10.1021/ct400392r 4. Zakrzewska, A., Zaleśny, R., Kolehmainen, E., Ośmiałowski, B.,

Jȩdrzejewska, B., Ågren, H., Pietrzak, M. Substituent effects on the

photophysical properties of fluorescent 2-benzoylmethylenequinoline

difluoroboranes: A combined experimental and quantum chemical study, Dyes

and Pigments 2013, 99 (3), pp. 957-965; DOI: 10.1016/j.dyepig.2013.08.002 5. Hua Lu, John Mack, Yongchao Yang and Zhen Shen, Structural modification

strategies for the rational design of red/NIR region BODIPYs, Chem. Soc.

Rev. 2014, 43, 4778-4823, DOI: 10.1039/c4cs00030g 6. Adèle D. Laurent, Carlo Adamo and Denis Jacquemin, Dye chemistry with

time-dependent density functional theory, Phys. Chem. Chem. Phys., 2014, 16, 14334-14356, DOI: 10.1039/C3CP55336A

7. Chibani, S., Laurent, A. D., Le Guennic, B., Jacquemin, D.: Improving the

Accuracy of Excited State Simulations of BODIPY and aza-BODIPY Dyes with

a Joint SOS-CIS (D) and TD-DFT Approach, Journal of Chemical Theory

and Computation, 2014, DOI: 10.1021/ct500655k 8. Nawal K. Al Rasbi, John Husband, Excitation and emission properties of

Zn(II) Schiff base complex by combined crystallographic, spectroscopic and DFT studies, J. Photochem. Photobiol. A: Chemistry 2016, 314, 96-103.

(772)

Synthetic Potentials of Heptamethine Merocyanine Dyes Containing an Active Chlorine Atom. Reactivity towards Nucleophiles: T. Gospodova, J. Rashkova, D.

Ivanova, L. Viteva, C. Duprat, M.-R. Mazières, S. Bakalova, and Jose Kaneti Eur.

J. Org. Chem., 2009, 29, 5063-5071.

1. K. C. Westaway, in Org. React. Mechanisms 2006, Ed. by A.C. Knipe, 2010,

J. Wiley & Sons, Ch. 8, pp. 231-276; (773)

Page 44: List of citations from the Web of Science, Scopus and PoP.exe

44

(445 as of Nov. 2005) (604 as of June 04, 2010) (485 as of Dec 04, 2006) (630 as of June 1, 2011) (500 as of May 31, 2007) (638 as of Nov. 7, 2011) (540 – 2008) (647 as of May 6, 2012) (542 as of Jan. 05, 2009) (767 as of May 31, 2017) (582 as of Jan 10, 2010) (600 as of Apr 30, 2010)