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SOFC cathodes using electrochemical technique and its manufacturing method

机译:使用电化学技术的SOFC阴极及其制造方法

摘要

The present invention is chemically of La 1 nanofibers form combines assisted deposition and infiltration techniques according to the solid oxide fuel cell, and more particularly lanthanum relates to x Sr x CoO 3 / GDC composite cathode and a method of manufacturing - cobalt (La-Co) after deposition of the oxide chemically porous GDC scaffold, followed by heat treatment and then, by infiltrating the Sr La 1-x Sr x CoO of the produced nano fiber form to form a three-phase La 1-x Sr x CoO 3 /GDC composite cathode and a method for manufacturing the same. La 1-x Sr x CoO 3 /GDC composite cathode in the form of nanofibers according to the present invention can provide a large surface area, can help transport an oxidizer through the nanoporous structure, and can provide high electrochemical performance. Therefore, it can be usefully used in a solid oxide fuel cell.
机译:本发明在化学上是La 1 纳米纤维形式,组合根据固体氧化物燃料细胞的辅助沉积和渗透技术,,更特别是镧涉及 x /亚> Sr x Coo 3 / gdc复合阴极和制备氧化物化学多孔Gdc支架后的制造 - 钴(La-Co),然后进行热处理然后,通过渗透所产生的纳米纤维形式的SR La 1-x / sr x / sub> Coo以形成三相 la 1-x Sr x coo 3 / gdc复合阴极及其制造方法。 La 1-x /亚> Sr x Coo 3 / gdc复合阴极,根据本发明的纳米纤维形式可以提供大的表面积,可以通过纳米多孔结构提供氧化剂,可以提供高电化学性能。因此,它可以用在固体氧化物燃料电池中使用。

著录项

  • 公开/公告号KR102261142B1

    专利类型

  • 公开/公告日2021-06-07

    原文格式PDF

  • 申请/专利权人

    申请/专利号KR1020180131896

  • 申请日2018-10-31

  • 分类号H01M4/88;H01M4/86;H01M4/90;H01M8/1253;H01M8/126;

  • 国家 KR

  • 入库时间 2022-08-24 19:14:19

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