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Development of Thin-film Solid Oxide Fuel Cells Supported on Anode/Metal Substrates

机译:阳极/金属基材支撑薄膜固体氧化物燃料电池的研制

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Lowering the operating temperature of solid oxide fuel cell (SOFC) has been studied at worldwide institutes over the past decades. In the process development, nano-structuring electrode catalysts for better reaction kinetics and thin-film electrolyte for reducing the ionic conduction resistance have been explored so far. Thin-film electrolyte enables low-temperature operation of SOFCs using conventional materials. Therefore, if the cell fabrication using the thin film electrolyte can be implemented with relatively low-cost and scalable technology, it will be possible to overcome the many difficulties that researchers suffered due to the high temperature. In this study, we developed a process for fabricating a button-size and large-area SOFC unit cells by introducing a thin-film electrolyte, supported on anode/metal substrates. Morphology analysis confirmed that the pinhole-free thin-film electrolyte was uniformly deposited. Electrochemical performance evaluation showed sufficient power density and area-specific resistance without using new materials.
机译:在过去几十年中,在全球研究所在全球研究所研究了降低固体氧化物燃料电池(SOFC)的工作温度。在该过程的开发中,到目前为止,已经探讨了用于更好的反应动力学和用于降低离子传导阻力的更好反应动力学和薄膜电解质的纳米结构化电极催化剂。薄膜电解质可以使用常规材料实现SOFC的低温操作。因此,如果使用薄膜电解质的电池制造可以以相对低成本和可扩展的技术实现,则可以克服由于高温而遭受的研究人员的许多困难。在这项研究中,我们开发了用于通过将薄膜电解质,支持阳极/金属衬底上制作的按钮尺寸和大面积的SOFC单电池的方法。形态学分析证实,均匀沉积无孔薄膜电解质。电化学性能评估显示出足够的功率密度和面积特异性电阻而不使用新材料。

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