期刊文献+

Preparation of Ultrafine and High Dispersion Pd/C Catalyst and Its Electrocatalytic Performance for Formic Acid Oxidation 被引量:8

Preparation of Ultrafine and High Dispersion Pd/C Catalyst and Its Electrocatalytic Performance for Formic Acid Oxidation
下载PDF
导出
摘要 A carbon supported Pd(Pd/C) catalyst used as the anodic catalyst in the direct formic acid fuel cells(DFAFC) was prepared via the improved complex reduction method with sodium ethylenediamine tetracetate(EDTA) as stabilizer and complexing agent. This method is very simple. The average size of the Pd particles in the Pd/C catalyst prepared with the improved complex reduction method is as small as about 2.1 nm and the Pd particles in the Pd/C catalyst possess an excellent uniformity. The Pd/C catalyst shows a high electrocatalytic activity and stability for the formic acid oxidation. A carbon supported Pd(Pd/C) catalyst used as the anodic catalyst in the direct formic acid fuel cells(DFAFC) was prepared via the improved complex reduction method with sodium ethylenediamine tetracetate(EDTA) as stabilizer and complexing agent. This method is very simple. The average size of the Pd particles in the Pd/C catalyst prepared with the improved complex reduction method is as small as about 2.1 nm and the Pd particles in the Pd/C catalyst possess an excellent uniformity. The Pd/C catalyst shows a high electrocatalytic activity and stability for the formic acid oxidation.
出处 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2009年第2期239-242,共4页 高等学校化学研究(英文版)
基金 Supported by the "863" Program of Science and Technology Ministry of China(Nos.2006AA05Z137, 2007AA05Z143 and 2007AA05Z159) National Natural Science Foundation of China(Nos.20433060, 20473038, 20573057 and 20703043) the Natural Science Foundation of Jiangsu Province, China(No.BK2006224).
关键词 Pd/C catalyst Complex reduction method Formic acid oxidation Pd/C catalyst Complex reduction method Formic acid oxidation
  • 相关文献

参考文献19

  • 1Zhu Y., Khan Z., Masel R. I., J. Power Sources, 2005, 139, 15
  • 2Ha S., Adams B., Masel R. I., J. Power Sources, 2004, 128, 119
  • 3Rice C., Ha S., Masel R. I., et al., J. Power Sources, 2002, 111, 83
  • 4Waszczuk P., Barnard T. M., Rice C., et al., Electrochem. Comm., 2002, 4, 599
  • 5Rice C., Ha S., Masel R. I., et al., J. Power Sources, 2003, 115, 229
  • 6Rhee Y. W., Ha S., Rice C., et al., J. Power Sources, 2003, 117, 35
  • 7Ha S., Larsen R., Masel R. I., J.Power Sources, 2005, 144, 28
  • 8Zhu Y. M., Ha S. Y., Masel R. i., J. Power Sources, 2004, 130, 8
  • 9Zhang L., Lu T., Tang Y., et al., Electrochem Comm., 2006, 8, 1625
  • 10Zhang L., Tang Y., Lu T., et al., J. Power Sources, 2006, 62, 177

同被引文献17

引证文献8

二级引证文献12

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部