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A Review of Molecular-Level Mechanism of Membrane Degradation in the Polymer Electrolyte Fuel Cell

机译:高分子电解质燃料电池中膜降解的分子水平机理研究进展

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Chemical degradation of perfluorosulfonic acid (PFSA) membrane is one of the most serious problems for stable and long-term operations of the polymer electrolyte fuel cell (PEFC). The chemical degradation is caused by the chemical reaction between the PFSA membrane and chemical species such as free radicals. Although chemical degradation of the PFSA membrane has been studied by various experimental techniques, the mechanism of chemical degradation relies much on speculations from ex-situ observations. Recent activities applying theoretical methods such as density functional theory, in situ experimental observation, and mechanistic study by using simplified model compound systems have led to gradual clarification of the atomistic details of the chemical degradation mechanism. In this review paper, we summarize recent reports on the chemical degradation mechanism of the PFSA membrane from an atomistic point of view.
机译:全氟磺酸(PFSA)膜的化学降解是聚合物电解质燃料电池(PEFC)稳定和长期运行的最严重问题之一。化学降解是由PFSA膜与化学物质(例如自由基)之间的化学反应引起的。尽管已经通过各种实验技术研究了PFSA膜的化学降解,但是化学降解的机理很大程度上取决于来自异位观察的推测。最近使用密度泛函理论,原位实验观察和通过使用简化的模型化合物系统进行机理研究等理论方法进行的活动已导致逐渐阐明化学降解机理的原子细节。在这篇综述文章中,我们从原子学角度总结了有关PFSA膜化学降解机理的最新报道。

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