研究领域:
储能,新材料,新能源,石油炼制,石油化工,精细化工
中文标签:
Null;Self Assembly;Applied Physics;Ionic Liquids;Cu;Electron Transfer;Electrochemistry;Ionic Liquid;Jump-to-contact;Ag Nanocontact
英文标签:
Stm Break Junction;Conductance Switching;Single-molecule Conductance;Carboxylic Acid;G-quadruplex;Hypericin;Fluorescence;Stm-bj;Scanning Tunneling Microscopy Break Junction;Molecular Electronics
论文著作:
1. Revealing the Molecular Structure of Single-Molecule Junctions in Different Conductance States by Fishing-Mode Tip-Enhanced Raman Spectroscopy
Zheng Liu; Song-Yuan Ding; Zhao-Bin Chen; Xiang Wang; Jing-Hua Tian; Jason R. Anema; Xiao-Shun Zhou; De-Yin Wu; Bing-Wei Mao; Xin Xu; Bin Ren; Zhong-Qun Tian
Nature Communications, 2011
2. Direct in Situ Raman Spectroscopic Evidence of Oxygen Reduction Reaction Intermediates at High-Index Pt(hkl) Surfaces.
Jin-Chao Dong; Min Su; Valentin Briega-Martos; Lang Li; Jia-Bo Le; Petar Radjenovic; Xiao-Shun Zhou; Juan Miguel Feliu; Zhong-Qun Tian; Jian-Feng Li
Journal of the American Chemical Society, 2019
3. In Situ Spectroscopic Insight into the Origin of the Enhanced Performance of Bimetallic Nanocatalysts Towards the Oxygen Reduction Reaction (ORR)
Ya-Hao Wang; Jia-Bo Le; Wei-Qiong Li; Jie Wei; Petar M. Radjenovic; Hua Zhang; Xiao-Shun Zhou; Jun Cheng; Zhong-Qun Tian; Jian-Feng Li
Angewandte Chemie International Edition, 2019
4. Do Molecular Conductances Correlate with Electrochemical Rate Constants? Experimental Insights.
Xiao-Shun Zhou; Ling Liu; Anne-Sophie Lefevre; Anna Serra-Muns; Noureddine Raouafi; Christian Amatore; Bing-Wei Mao; Emmanuel Maisonhaute; Bernd Schoellhorn
Journal of the American Chemical Society, 2011
5. Controlling and Observing Sharp-Valleyed Quantum Interference Effect in Single Molecular Junctions.
Bing Huang; Xu Liu; Ying Yuan; Ze-Wen Hong; Ju-Fang Zheng; Lin-Qi Pei; Yong Shao; Jian-Feng Li; Xiao-Shun Zhou; Jing-Zhe Chen; Shan Jin; Bing-Wei Mao
Journal of the American Chemical Society, 2018
6. Multichannel Conductance of Folded Single-Molecule Wires Aided by Through-Space Conjugation
Long Chen; Ya-Hao Wang; Bairong He; Han Nie; Rongrong Hu; Fei Huang; Anjun Qin; Xiao-Shun Zhou; Zujin Zhao; Ben Zhong Tang
Angewandte Chemie International Edition, 2015
7. Electrical Conductance Study on 1,3-Butadiyne-linked Dinuclear Ruthenium(ii) Complexes Within Single Molecule Break Junctions
Hui-Min Wen; Yang; Xiao-Shun Zhou; Jun-Yang Liu; Dao-Bin Zhang; Zhao-Bin Chen; Jin-Yun Wang; Zhong-Ning Chen; Zhong-Qun Tian
Chemical science, 2013
8. Plasmonic Core–Shell Nanomaterials and Their Applications in Spectroscopies
Yue-Jiao Zhang; Petar M. Radjenovic; Xiao-Shun Zhou; Hua Zhang; Jian-Lin Yao; Jian-Feng Li
ADVANCED MATERIALS, 2021
9. Probing Interfacial Electronic and Catalytic Properties on Well‐Defined Surfaces by Using in Situ Raman Spectroscopy
Ya-Hao Wang; Miao-Miao Liang; Yue-Jiao Zhang; Shu Chen; Petar Radjenovic; Hua Zhang; Zhi-Lin Yang; Xiao-Shun Zhou; Zhong-Qun Tian; Jian-Feng Li
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018
10. Extending the Capability of STM Break Junction for Conductance Measurement of Atomic-Size Nanowires: an Electrochemical Strategy
Xiao-Shun Zhou; Yi-Min Wei; Ling Liu; Zhao-Bin Chen; Jing Tang; Bing-Wei Mao
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2008
发明专利:
1. 一种SERS静默区自校准基底及其制备方法与应用
浙江师范大学
王亚浩; 陈照禾; 周小顺; 郑菊芳
公开日期: 2025-03-04 申请日期: 2024-10-09 公开号: CN118896946B
2. 一种电化学调控受阻路易斯酸碱对作用的单硼簇分子开关
浙江师范大学
王亚浩; 周小顺; 万强; 郭红洋; 郑菊芳
公开日期: 2025-01-07 申请日期: 2024-10-09 公开号: CN119277876A
3. 一种基于局域阳离子调控的可逆单分子开关
浙江师范大学
王亚浩; 郑菊芳; 童凌; 周小顺
公开日期: 2023-04-11 申请日期: 2023-01-16 公开号: CN115955899A
4. 一种用于单分子电导测量系统的微电流检测装置
浙江师范大学
周小顺; 郑菊芳; 梁景洪; 陈招斌
公开日期: 2015-05-27 申请日期: 2015-02-03 公开号: CN104655920A
科研项目:
1. 金属原子线和非氧化-还原型分子结电导的电化学门控研究
立项时间: 2013-2016 项目经费:800000
2. 基于全量程范围的STM裂结技术应用于芳香性对单分子结电子输运影响研究
立项时间: 2016-2019 项目经费:660000
3. 电活性分子的超快伏安和构象调控电导研究
立项时间: 2012-2012 项目经费:30000
4. 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
立项时间: 2011-2013 项目经费:190000
5. Pd-Ag纳米催化剂上电催化苄基氯还原过程的原位拉曼光谱研究
立项时间: 2020-2022
6. NiCo 层状双金属氢氧化物制备及其电催化析氧反应机理研究
立项时间: 2023
7. 基于量子干涉效应单分子结电子输运的电化学调控研究
立项时间: 2019-2022
8. 基于裂结技术的表面酸碱化学及其电化学调控的单分子水平研究
立项时间: 2021