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Optimization of the protonic ceramic composition in composite electrodes for high-performance protonic ceramic fuel cells

机译:高性能质子陶瓷燃料电池复合电极中质子陶瓷组成的优化

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摘要

A composite electrode in protonic ceramic fuel cells (PCFCs) is composed of an ionic conductor, an electronic conductor, and catalysts. To determine the contribution of the properties of the ionic conductor to the electrode performance, three different proton conductors: Ba(Ce0.75Y0.15)O3-delta (BCY), Ba(Ce0.45Zr0.30Y0.15)O3-delta (BCZY), and Ba(Zr0.75Y0.15)O3-delta (BZY), were used to fabricate composite electrodes for PCFCs. Moreover, their effects on the anode and cathode performances were investigated systematically. In the cathodes, the BCZY and BCY scaffolds showed a better performance than the BZY scaffold. However, in the anodes, the BZY scaffold showed a superior performance to the BCZY or BCY scaffold. This exhibited that the requirements of ion-conducting scaffolds in composite electrodes were different in cathodes and anodes and that the fuel cell performance could be optimized by choosing appropriate ionic conductors for each electrode. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:质子陶瓷燃料电池(PCFC)中的复合电极由离子导体,电子导体和催化剂组成。为了确定离子导体性能对电极性能的贡献,使用了三种不同的质子导体:Ba(Ce0.75Y0.15)O3-delta(BCY),Ba(Ce0.45Zr0.30Y0.15)O3-delta( BCZY)和Ba(Zr0.75Y0.15)O3-delta(BZY)用于制造PCFC的复合电极。此外,系统地研究了它们对阳极和阴极性能的影响。在阴极中,BCZY和BCY支架表现出比BZY支架更好的性能。然而,在阳极中,BZY支架表现出优于BCZY或BCY支架的性能。这表明复合电极中离子导电支架的要求在阴极和阳极中是不同的,并且可以通过为每个电极选择合适的离子导体来优化燃料电池的性能。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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