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PEMFC Catalysts Synthesis and Characterization: Relevance of Structural and Chemical Factors on Surface Diffusion Processes

机译:PEMFC催化剂的合成与表征:表面扩散过程中结构和化学因素的相关性

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摘要

Two series of proton exchange membrane fuel cell (PEMFC) catalysts have been synthesized by modifying two parameters, the reduction-step length and the carbon-black surface chemistry. The scope and applicability of conventional physical techniques for their structural characterization, such as X-ray diffraction or transmission electron microscopy, are compared with those of others involving chemical processes such as temperature-programmed oxidation, hydrogen chemisorption, or temperature-programmed desorption. The presented results show that these latter techniques provide valuable complementary information for the characterization of these catalysts. The influence of surface-diffusion processes on PEMFC catalyst properties is discussed in light of the presented characterization results.
机译:通过修改还原步长和炭黑表面化学两个参数,合成了两个系列的质子交换膜燃料电池(PEMFC)催化剂。将常规物理技术的结构特征(例如X射线衍射或透射电子显微镜)的范围和适用性与其他涉及化学过程(例如温度编程的氧化,氢化学吸附或温度编程的解吸)的物理方法进行了比较。呈现的结果表明,这些后面的技术为表征这些催化剂提供了有价值的补充信息。根据提出的表征结果,讨论了表面扩散工艺对PEMFC催化剂性能的影响。

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