应用化学

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碳纳米管载Pd-Au催化剂的合成及其对甲酸氧化的电催化性能

季益刚1,印亚静1,郭琦1,司南1,马娟2*,陆天虹3   

  1. (1.江苏第二师范学院化学系 南京 210013;2.昆山市药品监督检验所 昆山 215300;
    3.南京师范大学化学与材料科学学院,江苏省新型动力电池重点实验室 南京 210097)
  • 收稿日期:2013-05-21 修回日期:2013-07-02 出版日期:2014-01-10 发布日期:2014-01-10
  • 通讯作者: 马娟,助理研究员; Tel/Fax:0512-57501832; E-mail:majuansd@aliyun.com; 研究方向:电化学、药品质量标准与日常监督
  • 基金资助:
    江苏省高校自然科学基金(10KJD150007)和江苏第二师范学院“十一五”规划课题(JSjy2008qz03)资助项目

Preparation of Carbon Nanotubes Supported Pd-Au Catalyst and Their Electrocatalytic Activity for Formic Acid Oxidation

JI Yigang1, YIN Yajing1, GUO Qi1, SI Nan1, MA Juan2*, LU Tianhon3   

  1. (1.Department of Chemistry,Jiangsu Second Normal University,Nanjing 210013,China;
    2.Kunshan Drug Supervision and Inspection Institute,Kunshan 215300,China;
    3.Jiangsu Key Laboratory of New Power Batteries,School of Chemistry and
    Material Science,Nanjing Normal University,Nanjing 210097,China)
  • Received:2013-05-21 Revised:2013-07-02 Published:2014-01-10 Online:2014-01-10
  • Supported by:

    Supported by Natural Science Foundation of Colleges and Universities in Jiangsu Province(No.10KJD150007) and “Eleventh FiveYear Plan Project” of Jiangsu Second Normal University(No.JSjy2008qz03)

摘要: 将萘-1-亚甲基膦酸通过π-π堆积作用修饰在多壁碳纳米管(MWCNT)上,然后制备了MWCNT载Pd(Pd/MWCNT)催化剂。 利用Pd和HAuCl4间的置换反应制得MWCNT载Pd-Au(Pd-Au/MWCNT)催化剂。 透射电子显微镜(TEM)、X射线光电子能谱(XPS)和X射线衍射光谱(XRD)测试结果显示,非合金化的Pd-Au纳米粒子均匀分布在MWCNT表面。 循环伏安和计时电流测试显示,非合金化Pd-Au/MWCNT催化剂对甲酸氧化的电催化活性以及稳定性优于Pd/MWCNT催化剂。

关键词: 直接甲酸燃料电池, 碳纳米管, 催化剂, 甲酸氧化

Abstract: Naphthalen-1-ylmethylphosphonic acid was modified on multiwall carbon nanotube(MWCNT) by the π-π stacking interaction. Then, the Pd catalyst was supported on it. Furthermore, the MWCNT supported Pd-Au(Pd-Au/MWCNT) catalyst was facially prepared by the replacement reaction between Pd nanoparticles and HAuCl4. Transmission electron microscopy, X-ray diffraction and X-ray photoelectron spectroscopy measurements showed that non-alloyed Pd-Au nanoparticles were highly dispersed on the surface of MWCNT. Cyclic voltammetry and chronoamperometric measurements indicated that the Pd-Au/MWCNT catalyst exhibited better electrocatalytic activity and stability for formic acid oxidation than that of the Pd/MWCNT catalyst.

Key words: direct formic acid fuel cells, carbon nanotubes, catalyst, formic acid oxidation

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