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Recent Development of Electrolyte Supported Cells with High Power Density

机译:电解质支持电池的最新开发具有高功率密度的电池

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Development and progress in manufacturing of high power density electrolyte supported cell is presented. Two parallel directions to increase electrochemical performance of cells are discussed. Firstly, the electrolyte supported cells with improved cathode based on strontium doped lanthanum manganite with additional transition metal on B-place, La_(1-x)Sr_xMn_(1-y)M'_yO_(3-δ) (LSMM') and the multilayer anode based on Ni/8YSZ cermets are prepared and characterized. The second direction represents the electrolyte supported cells with improved cathode and multilayer anode based on Ni/GDC cermet. Both types of cells have significantly modified and improved electrodes microstructures, which have been achieved using advanced paste manufacturing technology. The maximum power density increases from 529 mW/cm~2 for commercial cell (Fa. Kerafol) up to 973 mW/cm~2 for novel 1KTS cell at 0.7 V at 860°C and is comparable with the performance of anode-supported SOFC cells. The changes in polarization resistance of tested cells under different conditions are discussed on the basis of analysis of impedance spectra.
机译:提出了高功率密度电解质支持电池制造的发展和进展。讨论了增加细胞电化学性能的两个平行方向。首先,电解质支持基于锶掺杂的锰酸镧与B-地方附加过渡金属,了La_(1-X)Sr_xMn_(1-Y)M'_yO_改进的阴极细胞(3-δ)(LSMM')和制备基于NI / 8YSZ金属陶瓷的多层阳极并表征。第二方向表示基于Ni / Gdc金属陶瓷的改进的阴极和多层阳极的电解质支持的细胞。两种类型的电池具有显着的改性和改进的电极微结构,这些电极微结构已经采用先进的粘贴制造技术实现。对于在860℃下为0.7V的新型1KTS细胞,最大功率密度从529 mW / cm〜2增加到1073mW / cm〜2的1073mW / cm〜2增加。在860℃下,在0.7V下为0.7V,并且与阳极支持的SOFC的性能相当细胞。基于阻抗光谱的分析,讨论了在不同条件下进行了测试细胞的偏振电阻的变化。

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