化学
咪唑
电导率
质子
质子导体
聚合物
Nafion公司
质子输运
化学工程
膜
超级电容器
纳米技术
高分子化学
化学物理
有机化学
电极
材料科学
物理化学
电化学
工程类
物理
电解质
量子力学
生物化学
作者
Kayaramkodath Chandran Ranjeesh,Rajith Illathvalappil,Sairam Dnyaneshwar Veer,Joseph Peter,Vivek Chandrakant Wakchaure,Goudappagouda Goudappagouda,K. Vipin Raj,Sreekumar Kurungot,Sukumaran Santhosh Babu
摘要
Proton-exchange membrane fuel cells are promising energy devices for a sustainable future due to green features, high power density, and mild operating conditions. A facile proton-conducting membrane plays a pivotal role to boost the efficiency of fuel cells, and hence focused research in this area is highly desirable. Major issues associated with the successful example of Nafion resulted in the search for alternate proton conducting materials. Even though proton carrier loaded crystalline porous organic frameworks have been used for proton-conduction, the weak host–guest interactions limited their practical use. Herein, we developed a crystalline 2D-polymer composed of benzimidazole units as the integral part, prepared by the condensation of aryl acid and diamine in polyphosphoric acid medium. The imidazole linked-2D-polymer exhibits ultrahigh proton conductivity (3.2 × 10–2 S cm–1) (at 95% relative humidity and 95 °C) in the pristine state, which is highest among the undoped porous organic frameworks so far reported. The present strategy of a crystalline proton-conducting 2D-polymer will lead to the development of new high performing crystalline solid proton conductor.
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