Space charge layer evolution at yttria-stabilized zirconia grain boundaries upon operation of solid oxide fuel cells

被引:12
作者
Chen, Yun [1 ,2 ]
Abernathy, Harry [1 ]
Hackett, Gregory [1 ]
Fan, Yueying [1 ,3 ]
Lee, Shiwoo [1 ,3 ]
Gerdes, Kirk [1 ]
Song, Xueyan [1 ,2 ]
机构
[1] Natl Energy Technol Lab, 3610 Collins Ferry Rd, Morgantown, WV 26507 USA
[2] West Virginia Univ, Dept Mech & Aerosp Engn, Morgantown, WV 26505 USA
[3] NETL, 3610 Collins Ferry Rd, Morgantown, WV 26507 USA
基金
美国能源部;
关键词
Solid oxide fuel cells; Anode degradation; YSZ grain boundaries; Space charge layer; Transmission electron microscopy; ELECTROLYSIS CELL; DEGRADATION; MICROSTRUCTURE; CONDUCTIVITY; ANODE; DEFECTS; PERFORMANCE; TRANSPORT; CERAMICS; SOFC;
D O I
10.1016/j.actamat.2022.118179
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Long-lasting solid oxide fuel cells (SOFC) rely upon an intact ionically conducting network in both the electrolyte and electrode. Understanding the impact of the high-temperature electrochemical operations on the possible nanostructure evolutions of ionic conductors is indispensable for the development of durable SOFC. Here we present possibly the first experimental evidence of space charge layer evolution of grain boundaries (GBs) of ionic conducting yttria-stabilized zirconia (YSZ) in a Ni/YSZ composite anode of SOFCs. Cells with identical Ni/YSZ composite anodes are either thermally treated or electrochemically operated using either dry or humidified H 2 fuel for up to 3,349 h. When operating under humidified H 2 fuel, a discrete core-shell structure is found to develop exclusively along the YSZ/YSZ GB planes. The core-shell structure is elliptically shaped elongated along the GB planes. The core has a lower mass with a Y-depleted ZrO 2-x with a cubic structure. The shell has a constant thickness of similar to 1 nm and is Y-enriched. The nucleation and growth mechanisms of the core-shell structure are proposed in terms of the space charge layer evolution at YSZ GBs. The effect of the humidity in the fuel, the cell operating temperatures, and the current density on the formation of the core-shell structure is investigated.(c) 2022 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
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页数:9
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