首页> 外文会议>Symposium on Combinatorial and Artificial Intelligence Methods in Materials Scinece II; 20031201-20031204; Boston,MA; US >Combinatorial Catalysis Survey concerning Proton Exchange Membrane Fuel Cell Technology - As a Part of 'MATERIOMICS' -
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Combinatorial Catalysis Survey concerning Proton Exchange Membrane Fuel Cell Technology - As a Part of 'MATERIOMICS' -

机译:关于质子交换膜燃料电池技术的组合催化调查-作为“ MATERIOMICS”的一部分-

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Our efforts to combine the combinatorial technology and microstructure analysis to develop catalysts for proton exchange membrane fuel cell (PEMFC) technology have been described. This offers the realization of "materiomics" in comprehensive material research. Catalyst technologies are indispensable for wide use of PEMFC, which are regarded as the low emission and highly efficient energy conversion device for the next generation. We have applied the combinatorial method for the hydrogen production and/or purification of catalysts, and anode catalyst investigations. The catalyst library consisting of precious metals loaded on various metal oxides was tested for water gas shift reaction and steam reforming of methanol and/or DME. Various metal oxides added to platinum loaded on carbon were screened for anode catalysts. The microstructure of each catalyst was analyzed by employing scanning electron and/or transmission electron microscopy. This paper mainly describes the catalysis screening results of above reactions that form a part of "materiomics".
机译:已经描述了我们将组合技术和微结构分析相结合以开发用于质子交换膜燃料电池(PEMFC)技术的催化剂的努力。这为综合材料研究提供了“组学”的实现。催化剂技术对于PEMFC的广泛使用必不可少,而PEMFC被认为是下一代的低排放和高效能转换装置。我们已将组合方法应用于制氢和/或纯化催化剂以及阳极催化剂的研究。测试了由负载在各种金属氧化物上的贵金属组成的催化剂库的水煤气变换反应和甲醇和/或DME的蒸汽重整。筛选添加到负载在碳上的铂中的各种金属氧化物作为阳极催化剂。通过采用扫描电子和/或透射电子显微镜分析每种催化剂的微观结构。本文主要描述了上述反应的催化筛选结果,这些反应构成了“单体组学”的一部分。

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