首页> 外文期刊>International journal of hydrogen energy >Study of BaCe_(0.4)Zr_(0.4)Y_(0.2)O_(3-δ)/BaCe_(0.8)Pr_(0.2)O_(3-δ) (BCZY/ BCP) bilayer membrane for Protonic Conductor Solid Oxide Fuel Cells (PC-SOFC)
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Study of BaCe_(0.4)Zr_(0.4)Y_(0.2)O_(3-δ)/BaCe_(0.8)Pr_(0.2)O_(3-δ) (BCZY/ BCP) bilayer membrane for Protonic Conductor Solid Oxide Fuel Cells (PC-SOFC)

机译:用于质子导体固体氧化物燃料电池的BaCe_(0.4)Zr_(0.4)Y_(0.2)O_(3-δ)/ BaCe_(0.8)Pr_(0.2)O_(3-δ)(BCZY / BCP)双层膜的研究( PC-SOFC)

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This paper address the blocking of the electronic conductivity for a BaCe0.8Pr0.2O3-delta (BCP) material due to the addition of a BaCe0.4Zr0.4Y0.2O3-delta (BCZY) thin layer. Barium cerates (BCP and BCZY) show interesting features as electrolytes for Proton Conducting Solid Oxide Fuel Cells (PC-SOFC). BCP perovskite displays good mechanical properties associated to its sintering capability, typically proposed as a possible electrolyte. However, this compound shows poor CO2 tolerance above 500 degrees C and presents mixed conductivity under wet synthetic air. Protonic transport is the main feature of BCZY perovskite and it presents an excellent CO2 tolerance. However, the drawback of this compound is its high grain boundary resistance. In this work, a BCZY film was grown by Pulsed Laser Deposition (PLD) on BCP in order to block its electronic conductivity and improve CO2 tolerance. From the electrochemical characterization of materials, it is proposed that BCP dominates transport mechanisms on the BCZY/BCP bilayer membranes under wet synthetic air and wet diluted hydrogen. Our measurements confirm that the BCZY film blocks the electronic conductivity of BCP under wet synthetic air and protects it from CO2-containig atmospheres. Due to this set of properties, the BCZY/BCP bilayer membrane represents a possible candidate as electrolyte for PC-SOFC operating between 400 and 600 degrees C. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文讨论了由于添加了BaCe0.4Zr0.4Y0.2O3-delta(BCZY)薄层而导致BaCe0.8Pr0.2O3-delta(BCP)材料的电导率受阻的问题。铈钡(BCP和BCZY)作为质子传导固体氧化物燃料电池(PC-SOFC)的电解质具有有趣的功能。 BCP钙钛矿显示出与其烧结能力相关的良好机械性能,通常被建议作为一种可能的电解质。但是,该化合物在500摄氏度以上的CO2耐受性较差,并且在湿合成空气中呈现出混合的导电性。质子传递是BCZY钙钛矿的主要特征,它具有出色的CO2耐受性。但是,该化合物的缺点是其高的晶界电阻。在这项工作中,通过脉冲激光沉积(PLD)在BCP上生长BCZY膜,以阻止其电子导电性并提高CO2耐受性。从材料的电化学表征,提出在湿合成空气和湿稀氢气下,BCP在BCZY / BCP双层膜上的运输机理起主导作用。我们的测量结果证实,BCZY膜在湿的合成空气下会阻挡BCP的电子导电性,并保护其免受含CO2的气氛的影响。由于这组特性,BCZY / BCP双层膜可能是PC-SOFC的电解质,可能在400到600摄氏度之间运行。(C)2019 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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