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中国科学技术大学博士生导师教师师资介绍简介-陈艳霞

本站小编 Free考研考试/2021-04-21

陈艳霞
单位:化学物理系
地址:中国科技大学合肥微尺度物质科学国家实验室
邮编:230026
电话:+86-
个人主页: https://dcp.ustc.edu.cn/2013/1210/c4472a39501/page.htm
实验室介绍:


个人简历 Personal resume


1989.9 – 1993.7,厦门大学化学系,学士学位 物理化学专业1993.9 – 1995.7,厦门大学化学系,硕士学位,物理化学专业1995.9 – 1998.10,厦门大学化学系,博士学位,物理化学专业1998.11 -1999.2, 厦大化学系,临时科研助手,物理化学专业1999.3-1999.6, 德国歌德学院,德语学习1999.7-2000.12,德国杜塞尔多夫大学表面和凝固态材料研究所(A. Otto 教授),洪堡奖学金,博士后2001.1-2001.12,慕尼黑工业大学物理系界面和能量转换研究所(U. Stimming教授),博士后2002.1 – 2002.3,日本北海道大学催化研究中心界面和光谱电化学实验室(M. Osawa教授),日本北海道大学文部省中核机构COE研究员2002.4 – 2006.12,德国乌尔姆大学表面化学和催化研究所 (R. J. Behm教授) 博士后2007.1 –至今,中国科技大学化学物理系,合肥微尺度物质科学国家实验室,教授


研究方向 Research direction


1、表面电化学/光谱电化学
2、电催化/单分子反应动力学
3、低温质子交换膜燃料电池



招生信息 Enrollment information


陈艳霞教授的谱学电化学研究室主要利用各种电化学原位谱学技术,如红外光谱、电化学扫描探针显微镜、电化学微分质谱等技术研究电极溶液界面的结构和性质及电极溶液界面电荷转移反应的内在规律,最近的研究重点是低温燃料电池相关的电催化剂和催化反应的基础研究。着重从原子、分子水平上研究电催化反应的机理和动力学。希望同时对化学和物理具有浓厚兴趣,而且具有坚实的数理化基础和良好的实验技能的学生加入我们的研究队伍。


论文专著 The monograph Researcher ID


1)Potential-Dependent Chemisorption of Carbon Monoxide at a Gold Core―Platinum Shell Nanoparticle Electrode: A Combined Study by Electrochemical in situ Surface-Enhanced Raman Spectroscopy and Density Functional Theory - J. Phys. Chem. C, 2010, 114, 403 - 2010 -
2)Temperature effects on CO Adsorption/Desorption at Pt Film Electrodes: An Electrochemical in-situ Infrared Spectroscopic Study - Phys. Chem. Chem. Phys. - 2010 - 2010, 12,
3)A method for kinetic study of methanol oxidation at Pt electrodes by electrochemical in situ infrared spectroscopy - Journal of Electroanalytical Chemistry - 2011 - 2011, 650
4)Temperature Programmed Desorption – An Application to Kinetic Studies of CO Desorption at Electrochemical Interfaces - J. Phys. Chem. C, 2009, 113, 20152 - 2009 -
5)An Electrochemical in Situ Surface-Enhanced Raman Spectroscopic Study of Carbon Monoxide Chemisorption at a Gold Core-Platinum Shell Nanoparticle Electrode with a Flow Cell - J. Phys. Chem. C, 2009,113(40): 17518 - 2009 -
6)The Mechanism and Kinetics of Cyanide-Assisted CO Desorption from Pt Electrodes: an Infrared Spectroscopic Study - J. Phys. Chem. C, 2009,113,10326 - 2009 -
7)A Thermostatic Cell with Gas Diffusion Electrode for Oxygen Reduction Reaction under Fuel Cell Relevant Conditions - Electrochem. Commun., 2009,11,1434 - 2009 -
8)CO island formation at submonolayer COad coverages on a Pt electrode in the H-upd potential region, - J. Physics Chemistry B, 2007, 111,435 - 2007 -
9)Kinetic Isotope Effect in Complex reaction networks- An in-situ IR study on Formic acid electrooxidation on Pt under controlled mass transport condition - ChemPhysChem, 2007, 8,380. - 2007 -
10)Bridge-bonded formate – Active Intermediate or Spectator Species in Formic Acid Oxidation on a Pt Film Electrode - Langmuir, 2006, 22, 10399. - 2006 -
11)Application of in-situ ATR-FTIR Spectroscopy for the Understanding of Complex Reaction Mechanism and Kinetics: Formic Acid Oxidation on a Pt Electrode at Elevated Temperature - J.Physics Chemistry B, 2006, 110, 9534. - 2006 -
12)Kinetics and mechanism of formic acid electrooxidation – Spectro-electrochemical studies in a novel flow cell configuration, - Angewandte chemie, Int. Edition, - 2006 -



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