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Recent progress in LaGaO3 based solid electrolyte for intermediate temperature SOFCs

机译:基于LaGaO3的中温SOFC固体电解质的最新进展

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摘要

Partial electronic and oxide ionic conduction in LaGaO3 doped with Sr and Mg, Co for Ga site was studied with the ion blocking method. It was found that doping small amount of Co into Ga site is effective for elevating the oxide ion conductivity. However, it is seen that the partial electronic conduction monotonically increases with increasing Co amount and P-O2, at p-n transition was shifted to lower value. Even at X = 0.1, the oxide ion conductivity in LSGMC is still dominant. Calculation on the theoretical leakage of electrolyte of solid oxide fuel cells suggests that the highest efficiency of the electrolyte was achieved around 100 mu m in thickness for La0.8Sr0.2Ga0.8Mg0.15Co0.05O3 (LSGMC). Preparation of LSGMC film on Ni-Sm0.2Ce0.8O2 porous anode was studied with the colloidal spray method. In order to prevent the reaction between substrate and film, La doped CeO2 was used for the interlayer film. In accordance with the theoretical calculation, open circuit potential of the cell using LSGMC film electrolyte with 40 mu m thickness becomes much smaller than the theoretical value. However, fairly large maximum power density (0.21 W/cm(2)) can be achieved at 873 K and even at 773 K, the maximum power density of the cell as high as 0.12 W/cm(2) was exhibited on the SOFC using 40 mu m thickness LSGMC electrolyte. (c) 2006 Elsevier B.V. All rights reserved.
机译:用离子阻挡法研究了掺Sr,Mg,Co对Ga位的LaGaO3中的部分电子和氧化物离子导电。发现将少量的Co掺杂到Ga位点对于提高氧化物离子电导率是有效的。然而,可以看出,随着Co含量和P-O 2的增加,在p-n跃迁时,部分电子传导单调增加。即使在X = 0.1时,LSMGC中的氧化物离子电导率仍然占主导地位。对固体氧化物燃料电池的理论电解质泄漏的计算表明,对于La0.8Sr0.2Ga0.8Mg0.15Co0.05O3(LSGMC),电解质的最高效率在厚度约100μm时达到。采用胶体喷涂法研究了在Ni-Sm0.2Ce0.8O2多孔阳极上制备LSMGC薄膜的方法。为了防止基材与膜之间的反应,将La掺杂的CeO 2用于中间膜。根据理论计算,使用厚度为40μm的LSGMC膜电解质的电池的开路电势变得比理论值小得多。但是,在873 K时甚至可以在773 K时达到相当大的最大功率密度(0.21 W / cm(2)),SOFC上显示的电池最大功率密度高达0.12 W / cm(2)。使用40微米厚的LSGMC电解质。 (c)2006 Elsevier B.V.保留所有权利。

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