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The Preparation and Properties of Composite Anode Materials CuXCoYO-SDC for Solid Oxide Fuel Cell

机译:固体氧化物燃料电池复合负极材料CuXCoYO-SDC的制备与性能

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In order to find out anode materials matching with mid-temperature electrolyte,CuXCoYO and SDC powders were prepared by sol-gel-EDTA method,and CuXCoYO-SDC was prepared by pressing.TG curve reflects that quality has no change after 800.Therefore,℃ the temperature of pre-burning is above 800℃.Because the melting point of copper oxide is 1038℃,the eventual temperature of sintering is set to be 1000℃.The powders are characterized by XRD.The result shows that CuO and Co2O3 have formed new intersoluble material of CuXCoYO,meanwhile,CuXCoYO and SDC do not react with each other and keep the single phase respectively.SEM figure of CuXCoYO-SDC composite anode after heat treatment in air atmosphere at 1000 ℃ shows that SDC scattered in CuXCoYO has not form a phase so that the conclusion of XRD before is confirmed.SEM figure of CuXCoYO-SDC anode material after reduction shows that the sintered anode has formed big pores and high porosity among particles and is helpful for fast gas spread to guarantee enough three-phase reaction interfaces.SDC particles take the catalytic role and transmit electrons and ions.This structure contributes to high electrical conductivity and catalysis for the anode material.The conductivity behaviors of CuXCoYO are tested.The results show that conductivity remains high at mid-temperature.The reduced Cu0.9Co0.1OSDC has the highest conductivity of 1310.1 S/cm at 500℃.
机译:为了找出与中温电解液匹配的负极材料,采用溶胶-凝胶-EDTA法制备了CuXCoYO和SDC粉体,并通过加压制备了CuXCoYO-SDC粉体.TG曲线反映出800后质量没有变化。预烧温度为800℃以上。由于氧化铜的熔点为1038℃,最终的烧结温度为1000℃。对粉末进行XRD表征。结果表明,CuO和Co2O3具有形成CuXCoYO的新型互溶材料,同时,CuXCoYO和SDC不会相互反应并保持单相。CuXCoYO-SDC复合阳极在空气中于1000℃热处理后的SEM图表明,SDC分散在CuXCoYO中没有还原后的CuXCoYO-SDC阳极材料的SEM图表明,烧结后的阳极在颗粒间形成了大孔和高孔隙率,有助于气体快速扩散至瓜拉。足够的三相反应界面,SDC颗粒起催化作用并传递电子和离子,这种结构有助于阳极材料的高电导率和催化作用,测试了CuXCoYO的电导行为,结果表明在还原的Cu0.9Co0.1OSDC在500℃时的最高电导率为1310.1 S / cm。

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