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Transport properties of acceptor-doped barium zirconate by electromotive force measurements

机译:通过电动势测量受体掺杂锆酸钡的传输性质

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In this work, a systematic work was performed to investigate the electrochemical transport properties of acceptor-doped BaZrO3 by measuring electromotive force on various gas concentration cells. For the measurements in the wet oxidizing atmosphere, where significant hole conduction occurs, the transport numbers of the ionic conduction were corrected by taking the effect of electrode polarization into consideration. The results revealed that regardless of whether Sc, Y, In, Ho, Er, Tm or Yb was doped, proton conduction predominated in the reducing atmosphere with the transport number close to unit. However, the contribution of ionic conduction weakens, and the contribution of hole conduction enhances, when the samples are exposed to the moist oxidizing atmosphere. In addition, introducing Ba-deficiency results in degraded electrochemical conductivity, but the transport number in either the moist reducing or the moist oxidizing atmosphere does not change obviously. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项工作中,进行了系统的工作,以通过测量各种气体浓度电池上的电动势来研究掺杂受体的BaZrO3的电化学传输性质。对于在发生明显的空穴传导的湿氧化气氛中的测量,通过考虑电极极化的影响来校正离子传导的传输数。结果表明,无论是否掺杂了Sc,Y,In,Ho,Er,Tm或Yb,质子传导在还原气氛中占主导地位,其传输数接近于单位。但是,当样品暴露在潮湿的氧化气氛中时,离子传导的作用减弱,而空穴传导的作用增强。另外,引入Ba-缺乏会导致电化学电导率降低,但是在湿还原气氛或湿氧化气氛中的迁移数都没有明显变化。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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