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氢化钡中具有高 H⁻离子电导率。

High H⁻ ionic conductivity in barium hydride.

机构信息

School of Chemistry, University of St Andrews, St Andrews KY16 9ST, UK.

Institut Laue-Langevin, BP 156, 6, rue Jules Horowitz 38042 Grenoble Cedex 9, France.

出版信息

Nat Mater. 2015 Jan;14(1):95-100. doi: 10.1038/nmat4136. Epub 2014 Dec 8.

Abstract

With hydrogen being seen as a key renewable energy vector, the search for materials exhibiting fast hydrogen transport becomes ever more important. Not only do hydrogen storage materials require high mobility of hydrogen in the solid state, but the efficiency of electrochemical devices is also largely determined by fast ionic transport. Although the heavy alkaline-earth hydrides are of limited interest for their hydrogen storage potential, owing to low gravimetric densities, their ionic nature may prove useful in new electrochemical applications, especially as an ionically conducting electrolyte material. Here we show that barium hydride shows fast pure ionic transport of hydride ions (H(-)) in the high-temperature, high-symmetry phase. Although some conductivity studies have been reported on related materials previously, the nature of the charge carriers has not been determined. BaH2 gives rise to hydride ion conductivity of 0.2 S cm(-1) at 630 °C. This is an order of magnitude larger than that of state-of-the-art proton-conducting perovskites or oxide ion conductors at this temperature. These results suggest that the alkaline-earth hydrides form an important new family of materials, with potential use in a number of applications, such as separation membranes, electrochemical reactors and so on.

摘要

随着氢气被视为一种关键的可再生能源载体,寻找具有快速氢传输性能的材料变得越来越重要。储氢材料不仅需要在固态中具有高的氢迁移率,而且电化学器件的效率在很大程度上也取决于快速的离子传输。尽管由于重量密度低,重的碱土金属氢化物在储氢方面的应用潜力有限,但它们的离子性质可能在新的电化学应用中证明是有用的,特别是作为离子导电电解质材料。在这里,我们表明氢化钡在高温、高对称性相中表现出快速的纯离子型氢阴离子(H(-))传输。尽管以前已经有一些关于相关材料的电导研究报告,但载流子的性质尚未确定。BaH2 在 630°C 时产生的氢阴离子电导率为 0.2 S cm(-1)。这比在该温度下的最先进的质子导体钙钛矿或氧离子导体大一个数量级。这些结果表明,碱土金属氢化物形成了一个重要的新材料家族,在分离膜、电化学反应器等许多应用中具有潜在的用途。

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