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Electrochemical properties of composite cathodes using Sm doped layered perovskite for intermediate temperature-operating solid oxide fuel cell

机译:Sm掺杂层状钙钛矿对中温固体氧化物燃料电池复合阴极的电化学性能

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摘要

SmBaCoO (SBCO) showed the lowest observed Area Specific Resistance (ASR) value in the LnBaCoO (Ln: Pr, Nd, Sm, and Gd) oxide system for the overall temperature ranges tested. The ASR of a composite cathode (mixture of SBCO and CeGdO) on a CeGdO(CGO91) electrolyte decreased with respect to the CGO91 content; the percolation limit was also achieved for a 50 wt% SBCO and 50 wt% CGO91 (SBCO50) composite cathode.The ASRs of SBCO50 on the dense CGO91 electrolyte in the overall temperature range of 500 to 750 °C were relatively lower than those of SBCO50 on the CGO91 coated dense 8 mol % yttria-stabilized zirconia (8YSZ) electrolyte for the same temperature range. From 750 °C and for all higher temperatures tested, however, the ASRs of SBCO50 on the CGO91 coated dense 8YSZ electrolyte were lower than those of the CGO91 electrolyte.The maximum power densities of SBCO50 on the Ni-8YSZ/8YSZ/CGO91 buffer layer were 1.034 W cm and 0.611 W cm at 800 °C and 700 °C.
机译:在整个测试温度范围内,SnBaCoO(SBCO)在LnBaCoO(Ln:Pr,Nd,Sm和Gd)氧化物系统中显示出最低的观察到的面积比电阻(ASR)值。 CeGdO(CGO91)电解质上复合阴极(SBCO和CeGdO的混合物)的ASR相对于CGO91含量降低;对于50 wt%的SBCO和50 wt%的CGO91(SBCO50)复合阴极,也达到了渗透极限。在500至750°C的整个温度范围内,SBCO50在致密CGO91电解质上的ASR相对低于SBCO50在相同温度范围内,在CGO91涂层的稠密8摩尔%氧化钇稳定的氧化锆(8YSZ)电解质上进行测试。但是从750°C开始,在所有高温下,CGO91涂层致密8YSZ电解质上SBCO50的ASR均低于CGO91电解质.Ni-8YSZ / 8YSZ / CGO91缓冲层上SBCO50的最大功率密度在800°C和700°C时分别为1.034 W cm和0.611 W cm。

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