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李铮

发布于:2018-01-04 星期四 16:01:45 点击数:8790

副教授,博士生导师

Email: zli@hnu.edu.cn


基本信息

李铮照片.png

李铮,理学博士,先后在湖南大学、复旦大学、阿肯色大学(University of Arkansas)获得学士、硕士和博士学位,随后在美国能源部旗下阿贡国家实验室(Argonne National Lab)进行博士后研究。2015年回国后在湖南大学化学化工学院任职副教授,迄今为止,在国际权威期刊共发表论文26篇,其中第一作者和通讯联系人文章14篇(总影响因子120,其中影响因子大于5论文13篇),文章总引用2000余次,申请并获授权中、美发明专利各1项。

教育背景

2015 博士后,阿贡国家实验室,指导老师:孙玉刚教授 

2015  Postdoc Fellow, Argonne National Laboratory, Supervisor: Dr. Yugang Sun


2012 化学博士,阿肯色大学,指导老师:彭笑刚教授

2012  Ph.D. majored in Chemistry, University of Arkansas, Supervisor: Dr. Xiaogang Peng


2007 化学硕士,复旦大学,指导老师:赵东元教授

2007  M.S. majored in Chemsitry, Fudan University, Supervisor: Dr. Dongyuan Zhao


2003 化学学士,湖南大学,指导老师:黄杉生教授,蒋健晖教授

2003  B.S. majored in Chemsitry, Hunan University, Supervisor: Dr. Shasheng Huang, Dr. Jianhui Jiang

工作履历

2015.6 - 现在     湖南大学化学化工学院,副教授、博士生导师。

研究领域

半导体量子限域纳米材料          Quantum Confined Semiconductor Nanocrystals

贵金属纳米材料                                    Noble Metal Nanomaterials

光催化                                                    Photocatalysis

生化传感                                                Biosensor

X射线同步辐射                                      Synchrotron X-ray Techniques

学术成果

[1]       Chen, Y.; Chen, D.; Li, Z.*; Peng, X.* Symmetry-Breaking for Formation of Rectangular CdSe Two-Dimensional Nanocrystals in Zinc-Blende Structure Journal of the American Chemical Society 2017, 139(29), 10009-10019.

 

[2]       Rasamani, K. D.†; Li, Z.†; Sun, Y. Significant Enhancement of Photocatalytic Water Splitting Enabled by Elimination of Surface Traps in Pt-Tipped CdSe Nanorods Nanoscale 2016, 8(44), 18621-18625. (†Equal contribution)

 

[3]       Li, Z.†; IV, J. J. F.†; Peng, S.; Sun, C.-J.; Ren, Y.; Wiederrecht, G. P.; Gray, S. K.; Sun, Y. Reversible Modulation of Surface Plasmons in Gold Nanoparticles Enabled by Surface Redox Chemistry Angewandte Chemie International Edition 2015, 54(31), 9076–9079. (†Equal contribution)

 

[4]       Li, Z.; Gosztola, D. J.; Sun, C.-J.; Heald, S. M.; Sun, Y. Exceptional Enhancement of Raman Scattering on Silver Chlorobromide Nanocube Photonic Crystals: Chemical and Photonic Contributions Journal of Materials Chemistry C 2015, 3(11), 2455-2461.

 

[5]       Li, Z.; Okasinski, J. S.; Gosztola, D. J.; Ren, Y.; Sun, Y. Silver Chlorobromide Nanocubes with Significantly Improved Uniformity: Synthesis and Assembly into Photonic Crystals Journal of Materials Chemistry C 2015, 3(1), 58-65.

 

[6]       Liu, Q.†; Li, Z.†; Okasinski, J. S.; Ren, Y.; Sun, Y. In situ High-Energy Synchrotron X-Ray Diffraction Revealing Precipitation Reaction Kinetics of Silver Ions with Mixed Halide Ions Journal of Materials Chemistry C 2015, 3(28), 7492-7498. (†Equal contribution)

 

[7]       Li, Z.; Okasinski, J. S.; Almer, J. D.; Ren, Y.; Zuo, X.; Sun, Y. Quantitative Determination of Fragmentation Kinetics and Thermodynamics of Colloidal Silver Nanowires by In Situ High-Energy Synchrotron X-Ray Diffraction Nanoscale 2014, 6(1), 365-370.

 

[8]       Li, Z.; Hu, Y.; Sun, Y. Promoting Photocatalytic Multiple-Electron Reduction in Aerobic Solutions Using Au-Tipped CdSe Nanorod Clusters Chemical Communications 2014, 50(12), 1411-1413.

 

[9]       Li, Z.; Sun, Y. Silver Chlorobromide Nanoparticles with Highly Pure Phases: Synthesis and Characterization Journal of Materials Chemistry A 2013, 1(23), 6786-6793.

 

[10]     Li, Z.; Qin, H.; Guzun, D.; Benamara, M.; Salamo, G.; Peng, X. Uniform Thickness and Colloidal-stable CdS Quantum Disks with Tunable Thickness: Synthesis and Properties Nano Research 2012, 5(5), 337-351.

 

[11]     Li, Z.; Ji, Y.; Xie, R.; Grisham, S. Y.; Peng, X. Correlation of CdS Nanocrystal Formation with Elemental Sulfur Activation and Its Implication in Synthetic Development Journal of the American Chemical Society 2011, 133(43), 17248-17256.

 

[12]     Li, Z.; Peng, X. Size/Shape-Controlled Synthesis of Colloidal CdSe Quantum Disks: Ligand and Temperature Effects Journal of the American Chemical Society 2011, 133(17), 6578-6586.

 

[13]     Li, Z.; Chen, D.; Tu, B.; Zhao, D. Synthesis and Phase Behaviors of Bicontinuous Cubic Mesoporous Silica from Triblock Copolymer Mixed Anionic Surfactant Microporous and Mesoporous Materials 2007, 105(1-2), 34-40.


[14]     Chen, D.†; Li, Z.†; Yu, C.; Shi, Y.; Zhang, Z.; Tu, B.; Zhao, D. Nonionic Block Copolymer and Anionic Mixed Surfactants Directed Synthesis of Highly Ordered Mesoporous Silica with Bicontinuous Cubic Structure Chemistry of Materials 2005, 17(12), 3228-3234. (†Equal contribution)