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    • 7. 发明申请
    • COMPOSITE CERAMIC ELECTROLYTE STRUCTURE AND METHOD OF FORMING; AND RELATED ARTICLES
    • 复合陶瓷电解质结构及其形成方法; 和相关文章
    • US20080299436A1
    • 2008-12-04
    • US11755044
    • 2007-05-30
    • Todd-Michael StrikerJames Anthony RuudStephane Renou
    • Todd-Michael StrikerJames Anthony RuudStephane Renou
    • H01M8/10H01M6/18
    • H01M8/1246H01M2300/0074H01M2300/0091Y02E60/525Y02P70/56
    • A composite ceramic electrolyte is provided. The composite ceramic electrolyte has a microstructure, which comprises a first ceramic composition comprising a plurality of nano-dimensional microcracks, and a second ceramic composition substantially embedded within at least a portion of the plurality of nano-dimensional microcracks. The first and the second compositions are different. A solid oxide fuel cell comprising a composite ceramic electrolyte having such a microstructure is provided. A method of making a composite ceramic electrolyte is also described. The method includes the steps of: providing a first ceramic composition comprising a plurality of nano-dimensional microcracks; and closing a number of the nano-dimensional microcracks with a second ceramic composition, wherein the first and the second compositions are different, so as to form a composite ceramic electrolyte having a microstructure which comprises a first ceramic composition comprising a plurality of nano-dimensional microcracks and a second ceramic composition substantially embedded within at least a portion of the plurality of nano-dimensional microcracks.
    • 提供复合陶瓷电解质。 复合陶瓷电解质具有微观结构,其包括包含多个纳米尺寸微裂纹的第一陶瓷组合物,以及基本嵌入在所述多个纳米尺寸微裂纹的至少一​​部分中的第二陶瓷组合物。 第一和第二组合物是不同的。 提供一种包括具有这种微结构的复合陶瓷电解质的固体氧化物燃料电池。 还描述了制备复合陶瓷电解质的方法。 该方法包括以下步骤:提供包含多个纳米尺寸微裂纹的第一陶瓷组合物; 以及用第二陶瓷组合物封闭许多纳米尺寸微裂纹,其中所述第一和第二组合物是不同的,以便形成具有微结构的复合陶瓷电解质,所述复合陶瓷电解质包含第一陶瓷组合物,所述第一陶瓷组合物包含多个纳米尺寸 微裂纹和基本上嵌入在所述多个纳米尺寸微裂纹的至少一​​部分中的第二陶瓷组合物。