首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Electrode properties of Cu-doped Bi0.5Sr0.5FeO3-delta cobalt-free perovskite as cathode for intermediate-temperature solid oxide fuel cells
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Electrode properties of Cu-doped Bi0.5Sr0.5FeO3-delta cobalt-free perovskite as cathode for intermediate-temperature solid oxide fuel cells

机译:Cu-掺杂Bi0.5SR0.5FeO3-Delta钴钙钛矿的电极性能作为中温固体氧化物燃料电池的阴极

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摘要

A cobalt-free perovskite oxide Bi0.5Sr0.5Fe0.8Cu0.2O3-delta (BSFC) has been investigated as novel cathode for intermediate-temperature solid oxide fuel cells (IT-SOFCs). The BSFC cathode exhibits good thermal stability and chemical compatibility with Ce0.9Gd0.1O1.95 (CGO) electrolyte below 950 degrees C. The average thermal expansion coefficient (TEC) of BSFC is 13.1 x 10(-6) K-1 within a temperature range of 50-800 degrees C in air, which is close to that of CGO electrolyte. Meanwhile, the polarization resistant values (R-P) of BSFC cathode on CGO electrolyte are 0.13, 0.32 and 0.76 ohm cm(2) at 700, 650 and 600 degrees C, respectively; the lowest cathode overpotential is 37 mV at a current density of 125 mA cm(-2) at 700 degrees C in air. The CGO electrolyte supported single cell with BSFC cathode exhibits maximum power density of 290 mW cm(-2) at 700 degrees C using dry H-2 as the fuel. The rate-limiting step for oxygen reduction reaction (ORR) on BSFC cathode is oxygen surface adsorption-dissociation process. The attractive electrochemical performance demonstrates that BSFC oxide is a promising cathode material for IT-SOFCs. (C) 2017 Elsevier B.V. All rights reserved.
机译:已经研究了一种无钴的钙钛矿氧化物Bi0.5SR0.5Fe0.8Cu0.2O3-Delta(BSFC)作为中温固体氧化物燃料电池(IT-SOFC)的新型阴极。 BSFC阴极表现出良好的热稳定性和与CE0.9GD0.1O1.95(CGO)电解质低于950℃的良好的热稳定性和化学相容性。BSFC的平均热膨胀系数(TEC)为13.1×10(-6)K-1空气中50-800摄氏度的温度范围,接近CgO电解质。同时,在CGO电解质上的BSFC阴极的偏振值(R-P)分别为0.13,0.32和0.76欧姆(2),分别为700,650和600℃。最低阴极通过在空气中以700℃的电流密度为125 mA cm(-2)的电流密度为37mV。 CGO电解质支持的具有BSFC阴极的单电池,使用干燥的H-2作为燃料,在700℃下以700℃的最大功率密度显示为290mW cm(-2)。 BSFC阴极上的氧还原反应(ORR)的速率限制步骤是氧表面吸附 - 解离过程。有吸引力的电化学性能表明BSFC氧化物是IT-SOFC的有希望的阴极材料。 (c)2017年Elsevier B.V.保留所有权利。

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