膜
电导率
化学工程
Nafion公司
渗透
质子
沸石
热传导
材料科学
化学
活化能
离子
硅
催化作用
有机化学
复合材料
电极
电化学
物理化学
生物化学
物理
量子力学
工程类
作者
Yekai Cai,Shuhao Lin,Yu Xia,Qingming Hou,Yuqin Lu,Hongyan Cao,Yixing Wang,Kang Huang,Zhi Xu
摘要
Abstract Fast proton conduction plays an essential role in ion conductive membranes (ICMs) for energy conversion and storage technologies, but the demand for low reactive species permeation always limits further enhancement in proton transport rate. Herein, an ICM incorporating ZSM‐5 zeolite with optimized physicochemical property of pore channels was developed to achieve highly conductive ion transport via regulating the silicon‐aluminum atomic (Si/Al) ratio of ZSM‐5. Benefiting from the regulation of pore channels of zeolites, the proton conductivity of the pristine membrane was remarkably improved to 1.7‐fold. As expected, the optimized membrane exhibited outstanding voltage efficiency (VE) of 85.7% and energy efficiency (EE) of 85.1% at 120 mA/cm 2 , which is considerably better than pure polymer membrane (VE of 80.5% and EE of 79.4%) and commercial Nafion 212 (VE of 81.3% and EE of 77.4%) membrane, respectively.
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