无水的
电导率
化学
质子
大气温度范围
介孔材料
咪唑
质子输运
化学工程
物理化学
有机化学
热力学
膜
催化作用
工程类
物理
量子力学
生物化学
作者
Yingxiang Ye,Liuqin Zhang,Qinfang Peng,Guan‐E Wang,Yangbin Shen,Ziyin Li,Lihua Wang,Xiang Ma,Qian-huo Chen,Zhangjing Zhang,Shengchang Xiang
摘要
On-board fuel cell technology requires proton conducting materials with high conductivity not only at intermediate temperatures for work but also at room temperature and even at subzero temperature for startup when exposed to the colder climate. To develop such materials is still challenging because many promising candidates for the proton transport on the basis of extended microstructures of water molecules suffer from significant damage by heat at temperatures above 80 °C or by freeze below -5 °C. Here we show imidazole loaded tetrahedral polyimides with mesopores and good stability (Im@Td-PNDI 1 and Im@Td-PPI 2) exhibiting a high anhydrous proton conductivity over a wide temperature range from -40 to 90 °C. Among all anhydrous proton conductors, the conductivity of 2 is the highest at temperatures below 40 °C and comparable with the best materials, His@[Al(OH)(1,4-ndc)]n and [Zn3(H2PO4)6(H2O)3](Hbim), above 40 °C.
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