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交流阻抗法研究苯酚在Sb3+,Ce3+掺杂SnO2/C/Ti系列电极上的电化学行为
引用本文:宋力,刘茜,康站伟,王博,王景霞,张克立.交流阻抗法研究苯酚在Sb3+,Ce3+掺杂SnO2/C/Ti系列电极上的电化学行为[J].武汉大学学报(理学版),2011,57(1):7-12.
作者姓名:宋力  刘茜  康站伟  王博  王景霞  张克立
作者单位:1. 信阳师范学院,化学化工学院,河南,信阳,464000;武汉大学,化学与分子科学学院,湖北,武汉,430072
2. 河南省神火集团有限公司,河南,商丘,476600
3. 陕西科技大学,机电工程学院,陕西,西安,710021
4. 信阳师范学院,化学化工学院,河南,信阳,464000
5. 武汉大学,化学与分子科学学院,湖北,武汉,430072
基金项目:国家自然科学基金(20071026)资助项目
摘    要:采用溶胶-凝胶法合成Sb3+,Ce3+掺杂SnO2胶体前驱体,分别经XC-72R碳黑吸附后制备出一系列碳载氧化物复合电催化剂.利用电化学交流阻抗法(EIS)测试Sb3+,Ce3+掺杂SnO2/C/Ti系列电极的交流阻抗值及随电位和不同苯酚浓度的变化情况.实验结果表明,随着施加在工作电极的电位升高,苯酚氧化的阻力减小;苯酚浓度越大,钝化膜越厚,苯酚氧化的阻力越大.

关 键 词:溶胶-凝胶法  苯酚  电化学交流阻抗法

Electrochemical Behavior of Phenol on Sb~(3+),Ce~(3+)-Doped SnO_2/C/Ti Anodes by AC Impedance Method
SONG Li,LIU Qian,KANG Zhanwei,WANG Bo,WANG Jingxia,ZHANG Keli.Electrochemical Behavior of Phenol on Sb~(3+),Ce~(3+)-Doped SnO_2/C/Ti Anodes by AC Impedance Method[J].JOurnal of Wuhan University:Natural Science Edition,2011,57(1):7-12.
Authors:SONG Li  LIU Qian  KANG Zhanwei  WANG Bo  WANG Jingxia  ZHANG Keli
Institution:SONG Li1,2,LIU Qian3,KANG Zhanwei3,WANG Bo4,WANG Jingxia1,ZHANG Keli2(1.College of Chemistry and Chemical Engineering,Xinyang Normal University,Xinyang 464000,Henan,China,2.College of Chemistry and Molecular Sciences,Wuhan University,Wuhan 430072,Hubei,3.Henan Shenhuo Coal Industary and Electricity Power Corporation Limited,Shangqiu 476600,4.College of Mechanical and Electrical Engineering,Shaanxi University of Science and Technology,Xi'an 710021,Shaanxi,China)
Abstract:Carbon supported oxide composite electrocatalysts were prepared through the absorption of Vulcan XC-72R carbon on Sb3+,Ce3+-doped SnO2 precursors which were obtained by sol-gel method.The changes of impedance values of Sb3+ and Ce3+-doped SnO2/C electrodes under the different potential and Phenol concentration were measured by electrochemical impedance spectroscopy(EIS).The results indicate that the reaction resistance becomes lower with the increasing voltage and has higher impedance with the increasing co...
Keywords:sol-gel method  phenol  AC impedance method  
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