电解质
阳极
耐久性
材料科学
氢
聚合物
化学工程
质子交换膜燃料电池
电极
直接乙醇燃料电池
复合材料
化学
燃料电池
有机化学
工程类
物理化学
作者
Liguang Lin,Zhiwei Cai,Yuanfei Niu,Yujie Wu,Jingjing Wang,Miaoyu Li,Dong Li,Tehua Wang,Zhengbang Wang,Tao Li,Tao Li,Shuangyin Wang
出处
期刊:Angewandte Chemie
[Wiley]
日期:2024-11-26
卷期号:64 (7): e202419919-e202419919
被引量:5
标识
DOI:10.1002/anie.202419919
摘要
Abstract High temperature polymer electrolyte membrane fuel cells (HT‐PEMFCs) have garnered significant attention due to their expanded range of hydrogen sources and simplified management systems. However, the frequent start‐up and shut‐down (SU/SD) caused fuel starvation operation condition seriously deteriorates the performance and lifetime of the fuel cell. In this manuscript, VO 2 was incorporated in the anode to restrain fuel starvation of the electrode. Under the operation condition, the insulative VO 2 would reversibly transform into metallic H x VO 2 by intercalating hydrogen, and H x VO 2 can automatically release hydrogen, which could act as the hydrogen buffer and suppress reverse‐current degradation. After the hydrogen release, the generated insulating VO 2 would prevent the side reactions during fuel starvation. Compared to the traditional Pt anode, the electrode with VO 2 showed much higher output power and greatly improved durability after fuel starvation. This work demonstrates the in situ reversible hydrogen storage/release‐controlled metal‐insulator phase transition strategy to enhance the durability of fuel cells.
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