首页> 外文期刊>International journal of hydrogen energy >Microstructure optimization of nickel/gadolinium - doped ceria anodes as key to significantly increasing power density of metal-supported solid oxide fuel cells
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Microstructure optimization of nickel/gadolinium - doped ceria anodes as key to significantly increasing power density of metal-supported solid oxide fuel cells

机译:镍/ ga掺杂的二氧化铈阳极的微观结构优化是显着提高金属负载的固体氧化物燃料电池功率密度的关键

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摘要

Metal-supported solid oxide fuel cells (MSCs) are promising candidates for mobile power generators like range extenders for battery electric vehicles due to their improved thermal conductivity and ruggedness. The limited space available in such vehicles heightens the need to achieve high power densities. In the present study, a significant increase in cell performance of the MSC concept of Plansee SE was demonstrated by means of systematic microstructure optimization of the complete cell architecture based on improved processing. Thickness and roughness of multi-layered Ni/GDC anode play a particularly important role in improving cell performance. After several optimization steps, a notable increase of current density from 1.29 A/cm(2) to 1.79 A/cm(2) at 700 degrees C and 0.7 V (+38%) was achieved. Additionally, lowering the anode roughness enables clear reduction of electrolyte thickness down to 2 mu m, a starting point for the further enhancement of cell performance. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:金属支撑的固体氧化物燃料电池(MSCs)具有改善的导热性和耐用性,是移动发电机(如电池电动汽车的增程器)的有希望的候选者。这种车辆可用的有限空间增加了实现高功率密度的需求。在本研究中,通过基于改进处理的完整单元架构的系统微观结构优化,证明了Plansee SE的MSC概念的单元性能显着提高。多层Ni / GDC阳极的厚度和粗糙度在改善电池性能方面起着特别重要的作用。经过几个优化步骤后,在700摄氏度和0.7 V(+ 38%)的条件下,电流密度从1.29 A / cm(2)显着增加到1.79 A / cm(2)。另外,降低阳极粗糙度可以使电解质厚度明显减小至2μm,这是进一步提高电池性能的起点。 (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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