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Effect of Nanocrystalline Perovskite-based Cathode Compositions on SOFC Performance: An Aspect of Cell Stability with Composite Interlayer

机译:基于纳米晶体钙钛矿的阴极组合物对SOFC性能的影响:复合层间细胞稳定性的一个方面

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Multicomponent nanocrystalline Sr-doped lanthanum manganite (La_(0.65)Sr_(0.3)MnO_3, LSM) and a composite cathode comprising of Sr-doped lanthanum ferrite (La_(0.54)Sr_(0.4)Co_(0.2)Fe_(0.8)O_3, LS-1) and cobaltite (La_(0.54)Sr_(0.4)Fe_(0.2)Co_(0.8)O_3, LS-2) were synthesized. Powder was characterized thoroughly. Sintering characteristics of all the cathode compositions were correlated with densification of the bulk cathode material and the electrical characterization of the sintered cathode compositions showed that the composite cathode exhibits higher electrical conductivity compared to LSM. Another composite (L80-C20) material has been synthesized to be used as a part of the intermediate bilayer containing 80% (50%LS-1+50%LS-2) cathode composite and 20% Co-doped CGO. Symmetric cell study showed the electrode polarization of this composite as low as 0.012 Ω-cm~2. Systematic stability studies of the electrochemical performance using single cells with different configurations revealed that use of intermediate bi-layer, one layer of CoCGO and another interlayer containing L80-C20 increases the cell stability in conjunction with doped lanthanum ferrite and cobaltite based composite electrodes.
机译:多组分纳米晶体SR掺杂镧锰锰(LA_(0.65)SR_(0.3)MNO_3,LSM)和包含SR掺杂镧铁素体的复合阴极(LA_(0.54)SR_(0.4)CO_(0.2)FE_(0.8)O_3, LS-1)和钴罐(La_(0.54)SR_(0.4)FE_(0.2)CO_(0.8)O_3,LS-2)被合成。粉末彻底表征。所有阴极组合物的烧结特性与体阴极材料的致密化相关,并且烧结阴极组合物的电学表现表明,与LSM相比,复合阴极表现出更高的电导率。已经合成了另一种复合物(L80-C20)材料以用作含有80%(50%LS-1 + 50%LS-2)阴极复合物和20%共掺杂CGO的中间双层的一部分。对称细胞研究显示该复合材料的电极极化低至0.012Ω-cm〜2。使用具有不同构型的单细胞的电化学性能的系统稳定性研究显示使用中间双层,一层Coco和含有L80-C20的另一个中间层,与掺杂的镧铁素体和基于钴罐的复合电极相结合增加了细胞稳定性。

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