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陳艷霞

發布者:徐勇(yong)強發布時間:2017-11-03瀏覽次數:17729

姓 名: 陳艷霞

地 址: 中國安徽省合肥市188bet足球化學物理系  
         合肥微(wei)尺度物質科學國(guo)家(jia)實驗室  230026

電 話: 0551-3600035

傳 真: 0551-3600035

個人主頁://ecel.ustc.edu.cn

Researcher ID: F-5929-2010

//orcid.org/0000-0002-1370-7422



 

個(ge)人簡介

1989.09 –     1993.07

廈門大學(xue)(xue)(xue)化學(xue)(xue)(xue)系,學(xue)(xue)(xue)士(shi)學(xue)(xue)(xue)位(wei),物理化學(xue)(xue)(xue)專(zhuan)業;

1993.09 –     1995.07

廈門大學(xue)化學(xue)系,碩士學(xue)位(wei),物理化學(xue)專業;

1995.09 –     1998.10

廈門大學(xue)化學(xue)系,博士學(xue)位(wei),物理化學(xue)專業;

1998.11 –     1999.02

廈大化學系,科(ke)研(yan)助手,物理(li)化學專業;

1999.03 –     2000.12

德(de)國杜塞爾(er)多夫大學表面和凝固態材(cai)料研(yan)究所,洪堡(bao)學者.

2001.01 –     2001.12

慕尼黑(hei)工業大學物理(li)系界面和能量轉(zhuan)換研究所(suo)博士后.

2002.01 –     2002.03

日(ri)本北(bei)海道(dao)大學催化研究(jiu)中(zhong)心界面和光譜(pu)電化學實驗(yan)室日(ri)本北(bei)海道(dao)大學文(wen)部省中(zhong)核機構COE研究(jiu)員(yuan).

2002.04 –     2006.12

德國烏爾(er)姆(mu)大學表(biao)面(mian)化學和(he)催(cui)化研究所洪堡學者;

2007.01 –     至(zhi)今

中(zhong)國科技大學化學物理系,合肥微(wei)尺度(du)物質科學國家實(shi)驗室教(jiao)授(shou),博士(shi)生導師。

  

研究方向

表面電(dian)(dian)化學、光譜(pu)電(dian)(dian)化學和電(dian)(dian)催(cui)化,著重于電(dian)(dian)化學界面結構、燃料電(dian)(dian)池(chi)以及生物電(dian)(dian)化學相(xiang)關的電(dian)(dian)催(cui)化反應(ying)機(ji)理(li)和動力學的基礎研究(jiu)以及相(xiang)關研究(jiu)技(ji)術(shu)的開發。



表(biao)性的學術論(lun)文

1.     Boosting Oxygen Reduction at Pt(111)|Proton Exchange Ionomer Interfaces through Tuning the Microenvironment Water Activity, ACS Applied Materials & Interfaces, 2024, 16, 4540

2.      The pH Induced Increase of the Rate Constant for HER at Au(111) in Acid Revealed by Combined Experiments and Kinetic Simulation, Anal Chem., 2024,96,67.

3.      “Buckets effect” in the kinetics of electrocatalytic reactions,Journal of Energy Chemistry,2024, 89, 388.

4.       Electrocatalysis of Oxygen Reduction on Te-modified Platinum Stepped Crystal Surfaces, ACS Catalysis, 2023,13,16045.

5.      On the Accurate Calibration of Differential Electrochemical Mass Spectrometry,Current Opinion in Electrochemistry 2023, 42,101393.

6.      Formic Acid Oxidation on Different Coverages of Bismuth-Modified Pt(100): A Detailed Voltammetric and FTIR Study, Journal of Catalysis, 2023,426,61

7.      Challenges and Recent Progress in Unravelling the Intrinsic pH Effect in Electrocatalysis,Current Opinion in Electrochemistry, 2022, 34,101003.

8.      Mechanistic Implication of the pH Effect and H/D Kinetic Isotope Effect on HCOOH/HCOO Oxidation at Pt Electrode, A Study by Computer Simulation,ACS Catal.,2021, 11, 6920.

9.     Electrochemical Reaction Induced pH Change at the Electrode/Electrolyte Interface and How to Choose the Right Buffer to Resist Such Change? Anal Chem., 2021,93,1976.

10.   The dynamic nature of CO adlayers on Pt(111) electrodes, Angewa Chem. Int. Ed. 2020,132, 1.


  

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