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Impact of volatile boron species on the microstructure and performance of nano-structured (Gd,Ce)O _2 infiltrated (La,Sr)MnO _3 cathodes of solid oxide fuel cells

机译:挥发性硼物质对固体氧化物燃料电池纳米结构(Gd,Ce)O _2渗透(La,Sr)MnO _3阴极的微观结构和性能的影响

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The impact of volatile boron species on the microstructure and performance of nano-structured (Gd,Ce)O _2-infiltrated (La,Sr)MnO _3 (GDC-LSM) cathodes of solid oxide fuel cells is studied for the first time. The results indicate that after the heat treatment of the cathodes at 800 °C in air for 30 days in the presence of borosilicate glass significant grain growth and agglomeration of infiltrated GDC nanoparticles are observed. The electrode polarization resistance of the GDC-LSM cathode after the heat treatment in the presence of glass is 3.15 Ω cm ~2 at 800 °C, substantially higher than 0.17 Ω cm ~2 of the cathode heat-treated in the absence of glass under identical conditions. ICP-OES analysis shows the deposition of boron species in the cathodes after sintering in the presence of glass powder. The results demonstrate the significant detrimental effect of volatile boron species on the microstructure and activity of nano-structured GDC-LSM cathode.
机译:首次研究了挥发性硼物种对固体氧化物燃料电池纳米结构(Gd,Ce)O _2渗透(La,Sr)MnO _3(GDC-LSM)阴极的微观结构和性能的影响。结果表明,在存在硼硅酸盐玻璃的情况下,将阴极在空气中于800°C的空气中热处理30天后,观察到明显的晶粒长大和渗透的GDC纳米颗粒的团聚。在玻璃存在下进行热处理后,GDC-LSM阴极的电极极化电阻在800°C下为3.15Ωcm〜2,大大高于在不存在玻璃的情况下在以下条件下进行热处理的阴极的0.17Ωcm〜2相同的条件。 ICP-OES分析显示,在玻璃粉存在下烧结后,硼物种沉积在阴极中。结果表明,挥发性硼物质对纳米结构的GDC-LSM阴极的微观结构和活性具有明显的有害作用。

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