浙师大化学与生命科学学院导师介绍:周小顺_-查字典考研网
 
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浙师大化学与生命科学学院导师介绍:周小顺

考研时间: 2012-08-04 来源:查字典考研网

姓名:周小顺

性别:男

出生年月:1981年

职称:副研究员

所在学院:化学与生命科学学院

个人简介:

周小顺,男,1981年生,博士,副研究员。

浙江师范大学物理化学研究所(2009.9-至今)

法国巴黎高师化学系博士后(2009.3-2009.9)

厦门大学化学系物理化学专业博士(2003-2009)

浙江大学化学系学士(1999-2003)

已在J. Am. Chem. Soc.、J. Phys. Chem. C、Langmuir、Electrochem. Commun.等SCI期刊上发表论文十几篇。

主讲课程

主讲本科课程:《材料科学技术与人类》

主讲研究生课程:《电化学选论》

学术兴趣及主要研究方向

扫描隧道显微术

单分子和金属原子量子输运

界面电化学

科研项目

1.“氧化-还原分子电子输运的STM裂结技术和电化学超快循环伏安法研究”,国家自然科学基金,2011.01-2013.12,主持;

2.“扫描隧道显微镜测量单分子电学性质的功能开发”,浙江省科技厅项目,2011.01-2012.12,主持;

3.“基于电化学STM的单分子结量子输运研究”,浙江省教育厅,2010.07-2012.12,主持。

发表论文

[1] Zhou, X. S.; Liu, L.; Fortgang, P.; Lefevre, A. S.; Serra-Muns, A.; Raouafi, N.; Amatore, C.; Mao, B. W.; Maisonhaute, E.; Schöllhorn, B. Do molecular conductances correlate with electrochemical rate constants? Experimental insights. J. Am. Chem. Soc. 2011, 133, 7509-7516.

[2] Zhou, X. S.; Liang, J. H.; Chen, Z. B.; Mao, B. W. An electrochemical jump-to-contact STM-break junction approach to construct single molecular junctions with different metallic electrodes. Electrochem. Commun. 2011, 13, 407-410.

[3] Liu, Z.; Ding, S. Y.; Chen, Z. B.; Wang, X.; Tian, J. H.; Anema, J. R.; Zhou, X. S.; Wu, D. Y.; Mao, B. W.; Xu, X.; Ren, B.; Tian, Z. Q. Revealing the molecular structure of single-molecule junctions in different conductance states by fishing-mode tip-enhanced Raman spectroscopy. Nat. Commun. 2011, 2, 305.

[4] Li, J. F.; Li, S. B.; Anema, J. R.; Yang, Z. L.; Huang, Y. F.; Ding, Y.; Wu, Y. F.; Zhou, X. S.; Wu, D. Y.; Ren, B.; Wang, Z. L.; Tian, Z. Q. Synthesis and characterization of gold nanoparticles coated with ultrathin and chemically inert dielectric shells for SHINERS applications. Appl. Spectrosc. 2011, 65, 620-626.

[5] Li, J. F.; Anema, J. R.; Yu, Y. C.; Yang, Z. L.; Huang, Y. F.; Zhou, X. S.; Ren, B.; Tian, Z. Q. Core-shell nanoparticle based SERS from hydrogen adsorbed on a rhodium(111) electrode. Chem. Commun. 2011, 47, 2023-2025.

[6] Li, J. F.; Huang, Y. F.; Ding, Y.; Yang, Z. L.; Li, S. B.; Zhou, X. S.; Fan, F. R.; Zhang, W.; Zhou, Z. Y.; Wu, D. Y.; Ren, B.; Wang, Z. L.; Tian, Z. Q. Shell-isolated nanoparticle-enhanced raman spectroscopy. Nature 2010, 464, 392-395.

[7] Tian, J. H.; Yang, Y.; Zhou, X. S.; Schollhorn, B.; Maisonhaute, E.; Chen, Z. B.; Yang, F. Z.; Chen, Y.; Amatore, C.; Mao, B. W.; Tian, Z. Q. Electrochemically assisted fabrication of metal atomic wires and molecular junctions by MCBJ and STM-BJ methods. ChemPhysChem 2010, 11, 2745-2755.

[8] Zhou, X. S.; Wei, Y. M.; Liu, L.; Chen, Z. B.; Tang, J.; Mao, B. W. Extending the capability of STM break junction for conductance measurement of atomic-size nanowires: An electrochemical strategy. J. Am. Chem. Soc. 2008, 130, 13228-13230.

[9] Zhou, X. S.; Chen, Z. B.; Liu, S. H.; Jin, S.; Liu, L.; Zhang, H. M.; Xie, Z. X.; Jiang, Y. B.; Mao, B. W. Single molecule conductance of dipyridines with conjugated ethene and nonconjugated ethane bridging group. J. Phys. Chem. C 2008, 112, 3935-3940.

[10] Wei, Y. M.; Zhou, X. S.; Wang, J. G.; Tang, J.; Mao, B. W.; Kolb, D. M. The creation of nanostructures on an Au(111) electrode by tip-induced iron deposition from an ionic liquid. Small 2008, 4, 1355-1358.

[11] Tang, Y. A.; Yan, J. W.; Zhou, X. S.; Fu, Y. C.; Mao, B. W. An STM study on nonionic fluorosurfactant zonyl FSN self-assembly on Au(111): Large domains, few defects, and good stability. Langmuir 2008, 24, 13245-13249.

[12] Zhou, X. S.; Dong, Z. R.; Zhang, H. M.; Yan, J. W.; Gao, J. X.; Mao, B. W. Self-assembly of a Rh(I) complex on Au(111) surfaces and its electrocatalytic activity toward the hydrogen evolution reaction. Langmuir 2007, 23, 6819-6826.

[13] Yan, J. W.; Sun, C. F.; Zhou, X. S.; Tang, Y. A.; Mao, B. W. A simple facet-based method for single crystal electrochemical study. Electrochem. Commun. 2007, 9, 2716-2720.

[14] Zhou, X. S.; Xu, X. M.; Zhong, H. P.; Long, L. S.; Huang, R. B.; Xie, Z. X.; Zheng, L. S.; Mao, B. W. Adsorption of metal-organic complex molecule on Au(111) surface. Acta. Phys. -Chim. Sin. 2005, 21, 949-951。

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