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首页> 外文期刊>Journal of the Ceramic Society of Japan >Microtubular SOFC using doped LaGaO3 electrolyte film prepared with dip coating method
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Microtubular SOFC using doped LaGaO3 electrolyte film prepared with dip coating method

机译:使用浸涂法制备的掺杂LaGaO3掺杂电解质膜的微管SOFC

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Preparation of Microtubular cell using doped lanthanum gallate (LSGM) electrolyte with a dip coating and co-sintering process was studied. In order to suppress Ni diffusion from Ni-based anode substrate to LSGM electrolyte layer, Ti added La-doped ceria (Ti-LDC) was inserted as buffer layer. The amount of Ni diffused in LSGM electrolyte was investigated by EDX analysis as a function of sintering temperatures. It was found that sintering at 1350°C is suitable from the sintering density and the Ni diffusion. The cell sintered at 1350°C exhibited the higher power density than that of the conventional LSGM micro-tubular cell, even though a small amount of Ni diffusion was still observed at the Ti-LDC buffer layer/LSGM electrolyte interface. The micro-tubular cell with around 50 μm thickness showed the open circuit potential higher than 1.0 V and the maximum power density of 0.69, 0.31 and 0.12 W/cm2 at 700, 600 and 500°C, respectively, were achieved.
机译:研究了使用浸涂的掺杂没食子酸镧(LSGM)电解质和共烧结工艺制备微管电池。为了抑制Ni从Ni基阳极基底扩散到LSGM电解质层,插入添加有Ti的La掺杂的二氧化铈(Ti-LDC)作为缓冲层。通过EDX分析研究了LSGM电解质中扩散的Ni量与烧结温度的关系。从烧结密度和Ni扩散的观点出发,发现在1350℃下烧结是合适的。即使在Ti-LDC缓冲层/ LSGM电解质界面上仍观察到少量的Ni扩散,在1350°C烧结的电池仍具有比常规LSGM微管电池更高的功率密度。厚度约为50μm的微管电池在700、600和500°C下的开路电势高于1.0 V,最大功率密度为0.69、0.31和0.12 W / cm 2 ,分别实现。

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