首页> 外文期刊>International journal of hydrogen energy >Deposition of nanostructured LSM perovskite thin film on dense YSZ substrate by airbrushed solution combustion (ASC) for application in SOFC cathodes
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Deposition of nanostructured LSM perovskite thin film on dense YSZ substrate by airbrushed solution combustion (ASC) for application in SOFC cathodes

机译:通过喷枪溶液燃烧(ASC)在致密YSZ衬底上沉积纳米结构LSM钙钛矿薄膜,用于SOFC阴极

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摘要

To make SOFC high efficiency energy generation devices, thin ceramic films are proposed as their main components. The rate of the oxygen reduction reaction is relevant for the overall performance of the SOFC, hence a lot of attention is given to the cathodes and their interfaces. The airbrushed solution combustion (ASC) method was used to fabricate an LSM thin film on a dense YSZ substrate. A single phase LSM perovskite was obtained with very thin and interconnected porosity, and a small average grain size (55 nm). The nano-structured LSM thin film electrode showed a low total activation energy (1.27 eV) at high temperatures, but a high area specific resistance at 850 degrees C (55 Omega.m(2)). The activation energy for the dissociative adsorption and diffusion of oxygen was significantly low (1.27 eV), while the charge transfer and oxygen ion migration activation energy at the LSM/YSZ interface (1.28 eV) was closer to those usually reported. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:为了制造SOFC高效能量产生装置,提出了薄陶瓷膜作为其主要成分。氧还原反应的速率与SOFC的整体性能有关,因此,对阴极及其界面给予了很多关注。喷枪溶液燃烧(ASC)方法用于在致密的YSZ基板上制造LSM薄膜。获得具有非常薄且互连的孔隙率和小的平均晶粒尺寸(55nm)的单相LSM钙钛矿。纳米结构的LSM薄膜电极在高温下显示出较低的总活化能(1.27 eV),但在850摄氏度(55 Omega.m(2))时显示出较高的面积比电阻。氧的解离吸附和扩散的活化能非常低(1.27 eV),而LSM / YSZ界面上的电荷转移和氧离子迁移活化能(1.28 eV)接近通常报道的活化能。 (C)2020 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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