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Integration of Ni-GDC layer on a NiCrA1 metal foam for SOFC application

机译:用于SOFC应用的NI-GDC层对NICRA1金属泡沫的集成

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摘要

Metal supported Solid Oxide Fuel Cells (MS-SOFCs) have attracted considerable interest for their increased robustness and tolerance to redox and thermal cycling and their cheaper production costs. One of the main issue for the development of the MS-SOFC is the integration of the metallic-ceramic electrode onto a metal substrate using cheaper and easily scalable manufacturing techniques. In this study, the integration of a Ni-GDC anode layer on NiCrAl metal support with a porosity higher than 80 vol.% by conventional technique was successfully addressed. A defect free electrode of 5 x 5 cm(2) of dimensions with smoothed surface (necessary for the electrolyte deposition) was obtained through a careful design of the thickness and the composition of the Ni-GDC layers and using (first time for this application) the stencil printing approach. The roughness of the final electrodic layer was comparable to the ones reported for layer deposited on flat/less porous ceramic substrates. (C) 2016 Elsevier Ltd. All rights reserved.
机译:金属支撑的固体氧化物燃料电池(MS-SOFC)因其对氧化还原和热循环增强的鲁棒性和耐受性以及较低的生产成本而引起了人们的极大兴趣。MS-SOFC发展的主要问题之一是使用更便宜且易于扩展的制造技术将金属陶瓷电极集成到金属基板上。在这项研究中,通过传统技术成功地解决了在孔隙率高于80 vol.%的NiCrAl金属载体上集成Ni-GDC阳极层的问题。通过仔细设计Ni-GDC层的厚度和成分,并使用(首次用于此应用)模板印刷方法,获得了尺寸为5 x 5 cm(2)且表面光滑(电解质沉积所需)的无缺陷电极。最终电镀层的粗糙度与报道的沉积在平坦/多孔性较差的陶瓷基底上的电镀层的粗糙度相当。(C) 2016爱思唯尔有限公司版权所有。

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