应用化学

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浸渍法制备硅钨酸修饰的炭载钯催化剂电催化甲酸氧化

王秀艳1,赵雪萍2,马树华2*   

  1. (1.承德石油高等专科学校化学工程系 承德 067000;
    2.山东省氟化学化工材料重点实验室,济南大学化学化工学院 济南 250022)
  • 收稿日期:2013-04-01 修回日期:2013-05-20 出版日期:2013-12-10 发布日期:2013-12-10
  • 通讯作者: 马树华,教授; Tel:0531-82769776; Fax:0531-82765475; E-mail:chm_mashh@ujn.edu.cn; 研究方向:新能源材料与器件;低、高温离子交换膜燃料电池关键材料及发电系统;锂离子电池储能新材料

Preparation of Silicotungstic Acid Modified Carbon Supported Pd Catalyst by Impregnation Method and Its Electrocatalytic Performance for Formic Acid Oxidation

WANG Xiuyan1, ZHAO Xueping2, MA Shuhua2*   

  1. (1.Department of Chemical Engineering,Chengde Petroleum College,Chengde 067000,China;
    2.Shandong Provincial Key Laboratory of Fluorine Chemistry and Chemical Materials,
    School of Chemistry and Chemical Engineering,University of Jinan,Jinan 250022,China)
  • Received:2013-04-01 Revised:2013-05-20 Published:2013-12-10 Online:2013-12-10

摘要: 用浸渍的方法制备了硅钨酸(SiWA)修饰的炭载Pd(Pd/C-SiWA)催化剂。 计时电流曲线研究表明,在Pd/C和Pd/C-SiWA催化剂电极上,3000 s时的电流密度分别为0.013和0.082 A/mg,分别为10 s时电流密度的2.5%和14.1%。 结果表明,Pd/C-SiWA催化剂对甲酸氧化的电催化稳定性要远远优于Pd/C催化剂。 这是因为Pd/C催化剂上SiWA的修饰抑制了甲酸的自分解, 从而减小了CO的毒化作用,改进了Pd/C催化剂对甲酸氧化的电催化和稳定性。

关键词: 直接甲酸燃料电池, 炭载钯催化剂, 硅钨酸修饰, 甲酸氧化, 甲酸分解

Abstract: The silicotungstic acid(SiWA) modified carbon supported Pd(Pd/C-SiWA) catalyst was prepared with immersing method. The chronoamperometric experiment shows that the current density are 0.013 A/mg and 0.082 A/mg at 3000 s for the Pd/C and Pd/C-SiWA catalysts, which are the 2.5% and 14.1% of that at 10 s, respectively. The result suggests that the electrocatalytic activity and stability of the Pd/C-SiWA catalyst for formic acid oxidation are much better than that of the Pd/C catalyst. This is attributed to that the Pd/C-SiWA catalyst inhibits the decomposition of formic acid leading to the decrease in the poisoning effect of CO. Thus, the electrocatalytic stability of the Pd/C catalyst for formic acid oxidation is improved.

Key words: direct formic acid fuel cell, carbon supported Pd catalyst, silicotungstic acid modification, formic acid oxidation, formic acid decomposition

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