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PrBaFe2O5+delta promising electrode for redox-stable symmetrical proton-conducting solid oxide fuel cells

机译:PRBAFE2O5 + DELTA用于氧化还原稳定对称质子导电固体氧化物燃料电池的促进电极

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摘要

The proton conduction behavior and electrochemical performance of PrBaFe2O5+delta (PBF) are firstly studied for use as promising anode materials in symmetrical proton-conducting solid oxide fuel cells (PCFCs). This study focuses on the investigation of protonic defect formation in PBF and its properties as an electrode, including its chemical stability, electrochemical performance and redox stability. PBF is found to have proton conductivity at intermediate temperatures, which contributes to improved hydrogen oxidation reaction and water formation reaction at the anode and cathode, respectively. Hence, the symmetrical PCFC exhibits a peak power density of 301 mW.cm(-2) and total resistance of 0.77 Omega.cm(2) at 700 degrees C. Further, it shows excellent redox-cycle stability upon cycling between fuel and air under a current load. The electrochemical analysis and redox cycling tests of the PBF anode demonstrate that PBF is an attractive candidate for alternative material for symmetrical PCFCs.
机译:首次研究了PrBaFe2O5+delta(PBF)作为对称质子传导固体氧化物燃料电池(PCFC)的阳极材料的质子传导行为和电化学性能。本研究着重于研究PBF中质子缺陷的形成及其作为电极的性能,包括其化学稳定性、电化学性能和氧化还原稳定性。发现PBF在中温下具有质子导电性,这分别有助于改善阳极和阴极的氢氧化反应和水生成反应。因此,对称PCFC的峰值功率密度为301 mW。厘米(-2),总电阻为0.77Ω。cm(2)。此外,在电流负载下,在燃料和空气之间循环时,它显示出极好的氧化还原循环稳定性。PBF阳极的电化学分析和氧化还原循环试验表明,PBF是对称PCFC的替代材料。

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