材料科学
无水的
导电体
电导率
大气温度范围
多孔性
热传导
质子
电解质
多孔介质
工作(物理)
快离子导体
质子输运
化学工程
湿度
纳米技术
复合材料
热力学
有机化学
电极
物理化学
化学
工程类
物理
量子力学
作者
Fahui Xiang,Shimin Chen,Shihe Zheng,Yisi Yang,Jiali Huang,Quanjie Lin,Lihua Wang,Shengchang Xiang,Zhangjing Zhang
标识
DOI:10.1021/acsami.1c10351
摘要
Crystalline porous materials (CPMs), exhibiting high surface areas, versatile structural topologies, and tunable functionality, have attracted much attention in the field of proton exchange membrane fuel cells (PEMFC) for their great potential in solid electrolytes. However, most hydrated CPM proton conductors suffer from the narrow working temperature and the high water/humidity dependence. Considering the practical application in different working environments, CPMs with high anhydrous conductivity from subzero to moderate temperature (>100 °C) are desirable, but it is still a huge challenge. Herein we summarized our recent research work in the anhydrous CPM proton conductors, including to rationally tune the structures of CPMs by using the strategies of pore engineering and protonic species control to achieve wide working temperature conduction, as well as to clarify the conducting mechanism. This spotlight will provide clues to flexibly design and fabricate wide-working-temperature CPM conductors with high protonic conductivity.
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