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Processing improvement and performance analysis of La0.85Sr0.15Ga0.8Mg0.2O2.825 electrolyte-supported fuel cells

机译:LA0.85SR0.15GA0.8MG0.2O2.825电解质支撑燃料电池的加工改进和性能分析

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摘要

In this study, La0.85Sr0.15Ga0.8Mg0.2O2.825 (LSGM1520), La0.6Sr0.4CO0.2Fe0.8O3-delta (LSCF6428), La0.4Ce0.6O1.8 (LDC46), and Ce0.8Sm0.2O1.9 (SDC20) powders were synthesized by the solid-state reaction. Three cell configurations were prepared: LSCF6428/LSGM1520/SDC20-Ni (Cell-A), LSCF6428/LSGM1520/porous LSGM1520/SDC20-Ni (Cell-B), and LSCF6428/LDC46/LSGM1520/LDC46/SDC20-Ni (Cell-C). An LDC46 layer and a porous LSGM1520 layer were used as the buffer and anode functional layers, respectively. The results showed that the LDC46 interlayer effectively reduced the ohmic resistance and electrode polarization resistance, and improved the adhesion between the electrolyte and the electrode, leading to enhanced power performance of the cells. The properties of the electrolyte-supported cells were analyzed by X-ray diffraction and scanning electron microscopy, and the performance was measured by electrochemical instrumentation and AC impedance spectroscopy. Finally, the performance, microstructures, and degradation rates of three cells were measured after 100 h of durability testing.
机译:在本研究中,LA0.85SR0.15GA0.8MG0.2O2.825(LSGM1520),LA0.6SR0.4CO0.2FE0.8O3-DERTA(LSCF6428),LA0.4CE0.6O1.8(LDC46)和CE0.8SM0。通过固态反应合成2O1.9(SDC20)粉末。制备了三种细胞配置:LSCF6428 / LSGM1520 / SDC20-Ni(Cell-A),LSCF6428 / LSGM1520 /多孔LSGM1520 / SDC20-Ni(Cell-B)和LSCF6428 / LDC46 / LSGM1520 / LDC46 / SDC20-Ni(细胞 - C)。 LDC46层和多孔LSGM1520层分别用作缓冲器和阳极功能层。结果表明,LDC46中间层有效地降低了欧姆电阻和电极偏振电阻,并改善了电解质和电极之间的粘合,导致电池的功率性能增强。通过X射线衍射和扫描电子显微镜分析电解质支持的细胞的性质,通过电化学仪器和AC阻抗光谱法测量性能。最后,在耐久性测试100小时后测量三个细胞的性能,微观结构和降解速率。

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