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A high-performing proton-conducting solid oxide fuel cell with layered perovskite cathode in intermediate temperatures

机译:中等温度下具有层状钙钛矿阴极的高性能质子传导固体氧化物燃料电池

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摘要

Proton conducting solid oxide fuel cells (SOFC) show great potential to be applied in electricity generation at intermediate temperature range, attracting the efforts of developing cathode material to further improve the power density by promoting the oxygen reduction reaction. An A-site deficient layered perovskite (PrBa)(0.95)(Fe0.9Mo0.1)(2)O5+delta (PBFM) is synthesized as cathode material for BaCe0.7Zr0.1Y0.2O3 (BCZY) based SOFC. A nanostructured composite electrode is fabricated by infiltrating another cobalt-based perovskite oxide of Sm0.5Sr0.5CoO3-delta into PBFM porous structure aiming at improving the overall catalytic reaction towards oxygen reduction. After confirming the chemical compatibility between these two materials, the electrochemical performances of the single cells are measured. With loading amount of. 10% Sm0.5Sr0.5CoO3-delta Nanoparticles, a peak power density of 532 mW cm(-2) is achieved at 700 degrees C comparing with 359 mW cm(-2) for bare PBFM electrode. A short-term stability confirms the durability of this composite electrode in practical working conditions. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:质子传导固体氧化物燃料电池(SOFC)在中等温度范围的发电中显示出巨大的潜力,吸引了开发阴极材料以通过促进氧还原反应进一步提高功率密度的努力。合成了一种A位缺陷层状钙钛矿(PrBa)(0.95)(Fe0.9Mo0.1)(2)O5 +δ(PBFM)作为基于BaCe0.7Zr0.1Y0.2O3(BCZY)的SOFC的阴极材料。通过将另一种钴基钙钛矿氧化物Sm0.5Sr0.5CoO3-δ渗透到PBFM多孔结构中来制备纳米结构复合电极,旨在改善总体上的催化反应以减少氧。在确认这两种材料之间的化学相容性之后,测量单电池的电化学性能。带装量。 10%Sm0.5Sr0.5CoO3-delta纳米粒子,在700摄氏度下实现了532 mW cm(-2)的峰值功率密度,而裸PBFM电极则为359 mW cm(-2)。短期稳定性证实了该复合电极在实际工作条件下的耐久性。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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