首页> 外文期刊>International journal of hydrogen energy >Fabrication and characterization of Ca~(2+), Sr~(2+), Ba~(2+), Sm~(3+), and La~(3+) co-doped ceria-based electrolyte powders for low-temperature anode-supported solid oxide fuel cells
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Fabrication and characterization of Ca~(2+), Sr~(2+), Ba~(2+), Sm~(3+), and La~(3+) co-doped ceria-based electrolyte powders for low-temperature anode-supported solid oxide fuel cells

机译:Ca〜(2 +),Sr〜(2 +),Ba〜(2 +),Sm〜(3+)和La〜(3+)共掺杂二氧化铈基电解质粉的制备与表征温度阳极支撑的固体氧化物燃料电池

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In this study, CeO2-based electrolytes are synthesized by a sol-gel method. Ce0.8Sm0.2O1.9, Ce0.8Sm0.15Ca0.05O1.875, Ce0.8Sm0.15Ca0.025Sr0.025O1.875 (S15CS05DC), Ce0.8Sm0.15La0.05O1.9, (La0.77Sr0.2Ba0.03)(0.15)Ce0.85O1.908, and (La0.77Sr0.2Ba0.03)(0.2)Ce0.8O1.877 specimens are prepared at sintering temperature 1300 degrees C for either 2 h or 4 h. The microstructures and electrical properties of the electrolytes are analyzed using X-ray diffraction, scanning electron microscopy, and alternating current (AC) impedance spectroscopy. All samples are cubic fluorite structure. It is found that while Ca2+ and Sr2+ contribute to grain growth, Sm3+ and La2+ inhibit it. The conductivity increases with temperature in a linear manner and reaches approximately 0.16 S.cm(-1) at 800 degrees C for the 4 h-sintered S15CS05DC sample. Six anode-supported cells are fabricated and tested at 600 degrees C-800 degrees C. Cell-C has the highest maximum power density (0.96 W.cm(-2)) at 800 degrees C. It is also found that ohmic resistance predominantly determines the total cell resistance at temperatures above 700 degrees C. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,基于CeO2的电解质是通过溶胶-凝胶法合成的。 Ce0.8Sm0.2O1.9,Ce0.8Sm0.15Ca0.05O1.875,Ce0.8Sm0.15Ca0.025Sr0.025O1.875(S15CS05DC),Ce0.8Sm0.15La0.05O1.9,(La0.77Sr0.2Ba0。 (03)(0.15)Ce0.85O1.908和(La0.77Sr0.2Ba0.03)(0.2)Ce0.8O1.877样品在1300摄氏度的烧结温度下制备2小时或4小时。使用X射线衍射,扫描电子显微镜和交流(AC)阻抗光谱仪分析了电解质的微观结构和电性能。所有样品均为立方萤石结构。发现Ca2 +和Sr2 +有助于晶粒长大,而Sm3 +和La2 +抑制晶粒长大。对于4 h烧结的S15CS05DC样品,电导率随温度以线性方式增加,并在800摄氏度下达到约0.16 S.cm(-1)。制作了六个阳极支撑的电池,并在600摄氏度至800摄氏度下进行了测试。电池800摄氏度在800摄氏度下具有最高的最大功率密度(0.96 W.cm(-2))。还发现,欧姆电阻主要是确定温度高于700摄氏度时的总电池电阻。(C)2018 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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