multidimensional chromatography

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Multidimensional chromatography eak kapacity (z * y) if selectivity is diffe he columns.

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Multidimensional chromatography. The peak kapacity (z * y) if selectivity is different in the columns. Multidimensional chromatography with heart cut. Only few bandes are cut. Advantages of multidimensional chromatography. Deans switch. The flow of mobile phase does not disturb by cut. - PowerPoint PPT Presentation

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Page 1: Multidimensional chromatography

Multidimensional chromatography

The peak kapacity (z * y) if selectivity is different in the columns.

Page 2: Multidimensional chromatography

Multidimensional chromatography with heart cut

Only few bandes are cut.

Page 3: Multidimensional chromatography

Advantages of multidimensional chromatography

Page 4: Multidimensional chromatography

Deans switch

The flow of mobile phase does not disturb by cut.No moving part are in the hot region.

Page 5: Multidimensional chromatography

Deans switch

Page 6: Multidimensional chromatography

Deans switches

No reactive surface in the flow pass.

Page 7: Multidimensional chromatography

The advantage of Deans switch in trace analysis

Page 8: Multidimensional chromatography
Page 9: Multidimensional chromatography

The sample focus in modulator

The sample is stopped (frozen) and focused in the modulator. The heating process is very fast.

Page 10: Multidimensional chromatography

Coeluted peak separation in second dimension in GC xGC

The second column is very short . Elution time on it is equal with the collection time of next fraction.

Page 11: Multidimensional chromatography

Analysis of chlorinated pesticides with GC x GC

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Analysis of gasoline with GC x GC

The first dimension is boiling point selective.Second dimension Π-Π interaction (aromatic) selective.

Page 13: Multidimensional chromatography

HPLC frequently use off-line technique

The concentration of fraction, and the changing of mobile phase is easy with off-line.

Horváth Krisztián

Page 14: Multidimensional chromatography

On-line coupling in HPLC

Collection from first column Transpher to second column

Horváth Krisztián

Page 15: Multidimensional chromatography

Ortogonality

The anlysis is orthogonal, if their selectivity are based on different interactions

Same selectivitya Different selectivity Different selectivityDifferent pH Different stationary phase

Horváth Krisztián

Page 16: Multidimensional chromatography

Corn oil 2D-HPLC

Horváth Krisztián

Page 17: Multidimensional chromatography

HPLC/GC coupling

Page 18: Multidimensional chromatography

HPLC/GC coupling

Page 19: Multidimensional chromatography

HPLC X HPLC

Page 20: Multidimensional chromatography

On-line coupling of chromatography - structure determination methods

• GC/MS, GC/FTIR

• HPLC/MS, HPLC/MS-MS, HPLC/FTIR, HPLC/NMR

• CE/MS, CE/MS-MS

Page 21: Multidimensional chromatography

On-line LC/MS coupling

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Scan B

Magnetic sector mass spectometer

The bigger mass gives longer pass. Bigger charge give shorter pass.Everday practice the magnetic field is changed, to detect the ions in one point.

Page 23: Multidimensional chromatography

Sheme of Quadrupol mass spectrometer

Page 24: Multidimensional chromatography

Sheme of Quadrupol mass spectrometer

Page 25: Multidimensional chromatography

Used ionization modes

Page 26: Multidimensional chromatography

Electron impact ionzation (EI)

Generally the fragmentation energy is 70 eV.

Page 27: Multidimensional chromatography

Fragmentation of EI

Quality measure is the (m/z) value.The quality measure the heigh of signals.The peak heigh is normalized for biggest peak (base peak, 100%).Certain compound has same fragmentation profile indepently from chromatographic.The quantitation is based on the area of total ion chromatogram (TIC) , or area of selected ions (SIM)

Page 28: Multidimensional chromatography

Ilustration of fragmentation

The moleculs can be puzzle from fragmentogram.

Page 29: Multidimensional chromatography

Fragmentation

The fragmentation is depend on the structure of analyte and fragmentation energy.

Page 30: Multidimensional chromatography

Chemical ionization CI

1 Torr 10-6 Torr

Page 31: Multidimensional chromatography

Chemical ionization (CI)• Pozitív (PCI) • NH3 + e -> NH4

+ + 2 e- • NH 4

+ + M > NH3 + [M+H] +

• NH 4 + + M > [M + NH4] +

• Negatív (NCI)• NH3 - e -> NH2

- • NH 2

- + M > NH2 + [M+H] -

• NH 2 + + M > [M + NH2] -

The pressure of CI is approximatelly 1 Torr. The reagents offer high and selective ionization . The CI is soft ionization having low fragmentation.

Page 32: Multidimensional chromatography

GC-MS analysis with negative CI

Sensitivity has increased with electron capturing heptabutyrofluorid butane derivatives (HFBA)

Page 33: Multidimensional chromatography

PCI vs. NCI

Page 34: Multidimensional chromatography

Comparison of various ionization modes

Page 35: Multidimensional chromatography

GC/MS on-line coupling

Page 36: Multidimensional chromatography

Izotopselective GC/MS

Page 37: Multidimensional chromatography

LC/MS couplings

The mobile phase has to be totally evaporatable.

Page 38: Multidimensional chromatography

HPLC/MS electrospray ionization

Page 39: Multidimensional chromatography

HPLC/MS electrospray ionization

Page 40: Multidimensional chromatography

HPLC/MS with atmospheric pressure electrospray ionization

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MS-MS coupling

Page 46: Multidimensional chromatography

Fast, selective analyses with LC/MS-MS

It is not necessary to separate compound, if they hace different fragmentation.

Page 47: Multidimensional chromatography

Determination of herbicides with LC/MS-MS

Page 48: Multidimensional chromatography

Ion trap MS

The ions are collected in parking circle.

Page 49: Multidimensional chromatography

Total ion chromatogram (TIC) and selected ion monitoring (SIM)

The SIM is more sensitive than TIC with several magnitude.

Page 50: Multidimensional chromatography

Comparison of TIC and (SIM)