首页> 外文期刊>Electrochimica Acta >Electrocatalytic oxidation of formic acid on Pd/MWCNTs nanocatalysts prepared by the polyol method
【24h】

Electrocatalytic oxidation of formic acid on Pd/MWCNTs nanocatalysts prepared by the polyol method

机译:多元醇法制备的Pd / MWCNTs纳米催化剂上甲酸的电催化氧化

获取原文
获取原文并翻译 | 示例
           

摘要

MWCNTs supported Pd nanocatalysts have been prepared by different variants of the polyol method aiming at a systematic study of the effect of preparation conditions (presence of citric acid as stabilizer and aging of the catalysts under stirring after the reduction) and support functionalization on the catalytic activity and stability of the prepared catalysts compared to commercial Pd/C. The catalysts were characterized with XRD and TEM to identify their crystal phases and nanostructure properties. All catalysts exhibit the fcc structure characteristic for Pd bulk metal. The Pd nanoparticles were unevenly distributed on the carbon materials with some agglomeration in case of CNTs whereas they were well distributed with high dispersion in Pd/C. CO oxidation on the prepared catalysts is particle size independent whereas formic acid electro-oxidation shows particle size dependency. Heat treatment of the catalysts prepared in the presence of citric acid at 200℃ enhances their activity toward formic acid oxidation while the heat treatment at 400℃ has an adverse effect on catalytic activity and stability which is discussed in terms of increased particle size. The results obtained in this study suggest the superiority of Pd nanocatalysts supported on CNTs compared to a commercial catalyst (Pd/C, E-TEK) in terms of both mass specific activity as well as surface specific activity despite their structurally less favorable properties. Chronoamperometry shows that Pd nanocatalysts prepared on functionalized carbon nanotubes without aging and in the absence of citric acid have the highest stability among all catalysts under study, the results agree with cyclic voltammetry measurements. All these features make the prepared Pd nanocatalysts suitable for practical applications as anode catalysts for direct formic acid fuel cells (DFAFCs).
机译:MWCNTs负载的Pd纳米催化剂是通过多元醇方法的不同变体制备的,目的是系统地研究制备条件(柠檬酸作为稳定剂的存在以及还原后搅拌下催化剂的老化)的影响,并支持官能化对催化活性的影响。与市售Pd / C相比,制备的催化剂的稳定性和稳定性。用XRD和TEM对催化剂进行了表征,以鉴定其晶相和纳米结构性质。所有催化剂均显示出Pd块状金属的fcc结构特征。在CNT的情况下,Pd纳米颗粒在碳材料上不均匀地分布,并且会发生一定的团聚,而在Pd / C中它们分布均匀,分散度高。制备的催化剂上的CO氧化与粒径无关,而甲酸的电氧化则显示出粒径依赖性。在200℃存在柠檬酸的条件下对制备的催化剂进行热处理可以增强其对甲酸氧化的活性,而在400℃进行热处理会对催化剂的活性和稳定性产生不利影响,这在增加粒径方面进行了讨论。在这项研究中获得的结果表明,尽管质量比活性和表面比活性尽管结构上较差,但它们在质量比活性和表面比活性方面均优于商用催化剂(Pd / C,E-TEK)。计时安培法显示,在所有研究的催化剂中,在不老化且不存在柠檬酸的情况下,在功能化碳纳米管上制备的Pd纳米催化剂具有最高的稳定性,其结果与循环伏安法测量结果一致。所有这些特征使得所制备的Pd纳米催化剂适合作为直接甲酸燃料电池(DFAFC)的阳极催化剂的实际应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号