Development of metal-supported solid oxide fuel cells with a thin-film electrolyte under an oxidizing atmosphere

IF 5.4 Q2 CHEMISTRY, PHYSICAL
Jaeseok Lee , Sungmin Kang , Heedae Lee , Kunho Lee , Gwangwoo Han , Sanghun Lee , Dong-Hyun Peck , Joongmyeon Bae
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引用次数: 0

Abstract

Metal-supported solid oxide fuel cells (SOFCs), which have received much attention based on their high thermo-mechanical strength, are generally fabricated under a reducing atmosphere to prevent oxidation of the metal. The fabrication of metal-supported SOFCs under an oxidizing atmosphere resolves certain inherent issues related to fabrication in a reducing atmosphere, such as instability of the cathode materials and the inter-diffusion phenomenon. On the other hand, this approach limits the process temperature to prevent the excessive oxidation of the metal. In this work, a means by which to fabricate metal-supported SOFCs under an air environment is developed with a thin-film electrolyte, with deposition at room temperature. By introducing a pore-reducing layer while also controlling the viscosity of the coating solution, the surface of the anode is designed to be dense and flat, enabling the stable deposition of a dense thin-film electrolyte. Notable electrochemical performance is exhibited considering the limited process temperature, which must remain below 1000 °C. Through a durability test including temperature cycling and a post-mortem analysis, remarkable robustness of the metal-supported SOFCs is observed.
氧化气氛下薄膜电解质金属支撑固体氧化物燃料电池的研制
金属支撑固体氧化物燃料电池(sofc)因其高热机械强度而受到广泛关注,通常在还原性气氛下制造,以防止金属氧化。氧化气氛下金属负载sofc的制备解决了在还原气氛下制备的一些固有问题,如正极材料的不稳定性和相互扩散现象。另一方面,这种方法限制了工艺温度,以防止金属的过度氧化。在这项工作中,开发了一种在空气环境下用薄膜电解质制备金属支撑sofc的方法,并在室温下沉积。通过引入孔隙还原层,同时控制涂层溶液的粘度,阳极表面设计得致密而平坦,使致密薄膜电解质能够稳定沉积。考虑到有限的工艺温度,必须保持在1000°C以下,表现出显著的电化学性能。通过包括温度循环和事后分析在内的耐久性测试,观察到金属支撑的sofc具有显著的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
9.10
自引率
0.00%
发文量
18
审稿时长
64 days
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