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首页> 外文期刊>International journal of hydrogen energy >Effect of humidification on the grain boundary conductivity and space-charge effects in yttrium- doped barium cerate
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Effect of humidification on the grain boundary conductivity and space-charge effects in yttrium- doped barium cerate

机译:加湿对Yttrum-Doped Barium CaRy的晶界电导率和空间电荷效应的影响

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摘要

Yttrium-doped barium cerate (BCY) exhibits proton conductivity in the nominal absence of water (p(H2O) = 10(-4) atm) below 450 degrees C (J. Mater. Chem. A 7 (2019) 18,135e18142). Under these conditions, the well-known instability of this material against carbon dioxide and humidity can be minimized, potentially allowing its application even in hydrocarbon-based atmospheres. Nonetheless, electrochemical transport properties of grain boundaries of BCY are still not well understood. Hence, we compare specific grain boundary conductivity and space-charge properties of BaCe0.9Y0.1O3-delta (BCY10) in both wet and low humidity by means of impedance spectroscopy in the temperature range 100-300 degrees C. In H-2, specific grain boundary conductivity increases in nominally dry conditions, while the bulk remains practically humidity independent. Conversely, in O-2, both bulk and specific grain boundary conductivities are higher in wet. The space-charge properties highlight that low levels of humidity, p(H2O) similar to 10(-4) atm, are sufficient to maintain functional performance, while providing enough stability. This work offers a significant advance to the knowledge of the transport properties of this family of materials at low temperatures, with special emphasis to conditions of low humidity, for potential future applications in proton-conducting electrolyte membranes. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:钇掺杂的钡冷冻钡(BCY)在标称不存在水中表现出质子电导率(P(H 2 O)& = 10(-4)atm)低于450℃(J.Ment.Chem.A 7(2019)18,135e18142 )。在这些条件下,可以最小化这种材料对二氧化碳和湿度​​的众所周知的不稳定性,潜在地允许其应用即使在基于烃般的气氛中。尽管如此,BCY晶界的电化学运输特性仍然不太了解。因此,通过在H-2中的温度范围内的阻抗光谱法将Bace0.9Y0.1O3-Delta(BCY10)的特定晶粒边界电导率和空间电荷特性进行比较。在H-2中的温度范围内的阻抗光谱,特定的晶界电导率在名义上的干燥条件下增加,而散装仍然是独立的湿度。相反,在O-2中,润湿的散装和特定晶界导电率较高。空间电荷特性突出显示,低水平的湿度,类似于10(-4)ATM的P(H2O)足以保持功能性能,同时提供足够的稳定性。这项工作为在低温下对该系列材料的运输性能的了解提供了重大进展,特别强调低湿度的条件,用于质子导电电解质膜中的潜在未来应用。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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