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Overview of the development of CO-tolerant anode electrocatalysts for proton-exchange membrane fuel cells

机译:质子交换膜燃料电池耐CO阳极电催化剂的发展概况

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Poisoning of Pt anode electrocatalysts by carbon monoxide (CO) is deemed to be one of the most significant barriers to be overcome in the development of proton-exchange membrane fuel cell systems (PEMFCs). The use of CO-tolerant electrocatalysts serves as the most hopeful way to solve this problem. It is well established that Pt-based alloy systems of CO-tolerant electrocatalysts can substantially withstand the presence of CO in the fuel stream. Based on literature starting in 2000, a few efforts have still been conducted at developing a more CO-tolerant anode electrocatalyst than the traditional Pt/C or PtRu/C systems. This review introduces and discusses these efforts. Pt-based electrocatalysts, including PtSn/C, PtMo/C (atomic ratio = 5:1), PtRuMo/C (Mo = 10 wt. percent), PtRu-H_xMoO_3/C and PtRu/(C nanotubes), appear to be poisoned by CO at the same, or a lower, level than traditional Pt/C or PtRu/C electrocatalysts. Platinum-free electrocatalysts, such as PdAu/C, have proven to be less strongly poisoned by CO than PtRu/C counterparts at temperatures of 60 deg C. A greater tolerance to CO can be achieved by modifying the structure of the electrocatalyst. This involves the use of a composite or double-layer that is designed to make the CO react with one of the electrocatalyst in advance while the main hydrogen reacts at another layer with a traditional Pt/C electrocatalyst.
机译:一氧化碳(CO)对Pt阳极电催化剂的中毒被认为是质子交换膜燃料电池系统(PEMFC)开发中要克服的最重要的障碍之一。使用耐CO的电催化剂是解决该问题的最有希望的方法。公认的是,耐CO的Pt基合金系统可以基本上承受燃料流中CO的存在。基于2000年开始的文献,与传统的Pt / C或PtRu / C系统相比,在开发更具耐CO的阳极电催化剂方面仍进行了一些努力。本文将介绍并讨论这些工作。包括PtSn / C,PtMo / C(原子比= 5:1),PtRuMo / C(Mo = 10 wt。%),PtRu-H_xMoO_3 / C和PtRu /(C纳米管)的Pt基电催化剂似乎是与传统Pt / C或PtRu / C电催化剂相同或更低水平的CO中毒。事实证明,在60摄氏度的温度下,无铂的电催化剂(如PdAu / C)与PtRu / C对应物相比,对CO的毒性较小。通过改变电催化剂的结构,可以提高对CO的耐受性。这涉及使用复合材料或双层材料,该材料设计成使CO预先与一种电催化剂反应,而主氢与另一种Pt / C电催化剂在另一层反应。

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