contents · tucker robinson, andrew goodwin, sasa zaric, and hongjie dai* stanford university, usa...

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Contents A DNA-Based Approach to the Carbon Nanotube Sorting Problem Xiaomin Tu and Ming Zheng * DuPont Central Research and Development, Wilmington, USA 185 194 Review Article From Two-Dimensional Metal Organic Coordination Networks to Near-Infrared Luminescent PbS Nanoparticle/Layered Polymer Composite Materials Fang Cui 1 , Junhu Zhang 1 , Tieyu Cui 2 , Sen Liang 1 , Bao Li 1 , Quan Lin 1 , and Bai Yang 1, * 1 Jilin University, China 2 Institute of Metal Research Chinese Academy of Sciences, China 195 202 Research Article Nano-Graphene Oxide for Cellular Imaging and Drug Delivery EXiaoming Sun, Zhuang Liu, Kevin Welsher, Joshua Tucker Robinson, Andrew Goodwin, Sasa Zaric, and Hongjie Dai* Stanford University, USA 203 212 50 nm [1100] NGO PEG NGO PEG/DOX PEGylated nano- graphene oxide 50 nm 1.5 1.2 0.9 0.6 0.3 0 200 400 600 Wavelength (nm) Absorbance 800 Starting material f36 f39 f45

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Page 1: Contents · Tucker Robinson, Andrew Goodwin, Sasa Zaric, and Hongjie Dai* Stanford University, USA 203 212 50 nm [1100] NGO PEG NGO PEG/DOX PEGylated nano-graphene oxide 50 nm 1.5

Contents

A DNA-Based Approach to the Carbon Nanotube Sorting Problem

Xiaomin Tu and Ming Zheng*

DuPont Central Research and Development, Wilmington,USA

185 194

Review Article

From Two-Dimensional Metal Organic Coordination

Networks to Near-Infrared Luminescent PbSNanoparticle/Layered Polymer Composite Materials

Fang Cui1, Junhu Zhang1, Tieyu Cui2, Sen Liang1,Bao Li1, Quan Lin1, and Bai Yang1,*

1 Jilin University, China2 Institute of Metal Research Chinese Academy of Sciences, China

195 202

Research Article

Nano-Graphene Oxide for Cellular Imaging and Drug Delivery

EXiaoming Sun, Zhuang Liu, Kevin Welsher, Joshua Tucker Robinson, Andrew Goodwin, Sasa Zaric, and Hongjie Dai*

Stanford University, USA

203 212

50 nm

[1100]

NGO PEGNGO PEG/DOX

PEGylated nano-graphene oxide

50 nm

1.5

1.2

0.9

0.6

0.3

0200 400 600

Wavelength (nm)

Abs

orba

nce

800

Starting material f36 f39 f45

Page 2: Contents · Tucker Robinson, Andrew Goodwin, Sasa Zaric, and Hongjie Dai* Stanford University, USA 203 212 50 nm [1100] NGO PEG NGO PEG/DOX PEGylated nano-graphene oxide 50 nm 1.5

Inorganic Hierarchical Nanostructures Induced by Concentration Difference and Gradient

Haibin Chu, Xuemei Li, Guangda Chen, Zhong Jin, Yan Zhang, and Yan Li*

Peking University, China

213 220

Growth and Optical Applications of Centimeter-Long ZnO Nanocombs

Ke Yu1, Qiuxiang Zhang2, Jin Wu1, Lijun Li1, Yu’e Xu1,

Shaohua Huang3, and Ziqiang Zhu1,*

1 East China Normal University, China2 Shanghai Jianqiao College, China3 Fudan University, China

221 228

A Facile Synthesis of Monodisperse Au Nanoparticles and Their Catalysis of CO Oxidation

Sheng Peng1, Youngmin Lee1, Chao Wang1, Hongfeng Yin2, Sheng Dai2, and Shouheng Sun1,*

1 Brown University, USA2 Oak Ridge National Laboratory, USA

229 234

Nano Research

Page 3: Contents · Tucker Robinson, Andrew Goodwin, Sasa Zaric, and Hongjie Dai* Stanford University, USA 203 212 50 nm [1100] NGO PEG NGO PEG/DOX PEGylated nano-graphene oxide 50 nm 1.5

Bacteriophage M13 as a Scaffold for Preparing Conductive Polymeric Composite Fibers

Zhongwei Niu1, Michael A. Bruckman1, Brandon Harp1, Charlene M. Mello2, and Qian Wang1

1 University of South Carolina, USA2 US Army Natick Soldier Research, Development & Engineering Center, USA

235 241

Porous LiFePO4/NiP Composite Nanospheres as the Cathode Materials in Rechargeable LithiumIon Batteries

Chunsheng Li, Shaoyan Zhang, Fangyi Cheng,Weiqiang Ji, and Jun Chen*

Nankai University, China

242 248

Growth of Anisotropic Platinum Nanostructures Catalyzed by Gold Seed Nanoparticles

Zheng Fang, Yuliang Zhang, Feifei Du, and Xinhua Zhong*

East China University of Science & Technology, China

249 257