电导率
材料科学
电极
陶瓷
电解水
化学工程
钙钛矿(结构)
电解
无机化学
复合材料
化学
电解质
物理化学
工程类
作者
Chuan Zhou,Xixi Wang,Dongliang Liu,Meijuan Fei,Jie Dai,Daqin Guan,Zhiwei Hu,Linjuan Zhang,Yu Wang,Wei Wang,Ryan O’Hayre,San Ping Jiang,Wei Zhou,Meilin Liu,Zongping Shao
出处
期刊:Energy & environmental materials
日期:2023-07-09
被引量:20
摘要
For protonic ceramic fuel cells, it is key to develop material with high intrinsic activity for oxygen activation and bulk proton conductivity enabling water formation at entire electrode surface. However, a higher water content which benefitting for the increasing proton conductivity will not only dilute the oxygen in the gas, but also suppress the O 2 adsorption on the electrode surface. Herein, a new electrode design concept is proposed, that may overcome this dilemma. By introducing a second phase with high‐hydrating capability into a conventional cobalt‐free perovskite to form a unique nanocomposite electrode, high proton conductivity/concentration can be reached at low water content in atmosphere. In addition, the hydronation creates additional fast proton transport channel along the two‐phase interface. As a result, high protonic conductivity is reached, leading to a new breakthrough in performance for proton ceramic fuel cells and electrolysis cells devices among available air electrodes.
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