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Low-temperature fabrication of (Ba,Sr)(Co,Fe)O3 cathode by the reactive sintering method

机译:反应烧结法低温制备(Ba,Sr)(Co,Fe)O3阴极

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In this study, we prepare Basub0.5/subSrsub0.5/subCosub0.8/subFesub0.2/subOsub3–δ/sub (BSCF) cathodes using the reactive sintering method. BSCF is known as a candidate for cathode material of intermediate temperature solid oxide fuel cell. This BSCF cathode is fabricated on the anode supported cells at a low-temperature of 700°C in order to overcome a crystal phase transition from cubic to hexagonal. Utilizing the reactive sintering, hexagonal BSCF cathode can be synthesized and sintered at 700°C by using the intermediate compound of BSCF. In addition, the reactive sintering can improve the sinterability of BSCF and decrease the ohmic and polarization resistances of the cells. The anode supported cell having hexagonal BSCF cathode shows a good power output, compared with the sample made from a commercial cubic BSCF powder. Its maximum power output reaches to ca. 1 W cmsup?2/sup at 700°C. It is considered that the reactive sintered BSCF cathode layer has a good interface with gadolinium doped ceria interlayer. It is found the hexagonal BSCF has good cathode properties if the cathode sintered well at low-temperature.
机译:在本研究中,我们制备了Ba 0.5 Sr 0.5 Co 0.8 Fe 0.2 O 3-δ< (BSCF)阴极采用反应烧结法。众所周知,BSCF是中温固体氧化物燃料电池阴极材料的候选材料。 BSCF阴极是在700°C的低温下制造在阳极支撑的电池上,以克服从立方到六方晶相的转变。利用反应烧结,可以通过使用BSCF的中间体化合物合成六方BSCF阴极并在700℃下烧结。另外,反应性烧结可改善BSCF的烧结性并降低电池的欧姆电阻和极化电阻。与由商用立方BSCF粉末制成的样品相比,具有六角形BSCF阴极的阳极支撑电池显示出良好的功率输出。其最大功率输出达到约。在700°C下1 W cm ?2 。认为反应性烧结的BSCF阴极层与掺杂do的二氧化铈中间层具有良好的界面。已经发现,如果阴极在低温下烧结良好,则六角形BSCF具有良好的阴极性能。

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