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首页> 外文期刊>International journal of hydrogen energy >Structural evolution, mechanical, electronic and vibrational properties of high capacity hydrogen storage TiH_4
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Structural evolution, mechanical, electronic and vibrational properties of high capacity hydrogen storage TiH_4

机译:高容量储氢的结构演化,机械,电子和振动性能TiH_4

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Titanium tetra hydride is considered for hydrogen storage purposes. Firstly, formation energy, hydrogen desorption temperature and gravimetric hydrogen density of TiH4 is computed. Secondly, an ab initio constant pressure molecular dynamic simulation under pressure is performed to reveal behaviour of TiH4 for the first time. The result exhibits two phase transitions successively. C2/m phase of TiH4 transforms into C2/c phase at 40 GPa simulation pressure. Then, elastic constants of phases are determined to examine mechanical stability of phases. Based on the evolution of elastic constants, it is found that C2/m phase is mechanically stable whereas C2/c phase is not mechanically stable. Additionally, several critical parameters which are important for hydrogen storage as brittleness and ductility, Young and Shear modulus are obtained and analysed. In addition, electronic structures of phases are calculated and evaluated. Finally, dynamic stability from phonon dispersion curves is examined. C2/m phase is also found to be dynamically stable. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:考虑钛氢化物用于储氢目的。首先,计算TiH4的形成能量,氢解吸温度和重量氢密度。其次,执行压力下的AB初始压力分子动态模拟,以揭示TIH4的第一次行为。结果连续表现出两相过渡。 TiH4的C2 / M相以40GPa模拟压力转化为C2 / C相。然后,确定各相的弹性常数检查相位的机械稳定性。基于弹性常数的演化,发现C2 / M相是机械稳定的,而C2 / C相没有机械稳定。另外,获得并分析了几种对储氢作为脆性和延展性,年轻和剪切模量很重要的关键参数。此外,计算和评估各相的电子结构。最后,检查了来自声子分散曲线的动态稳定性。 C2 / M相也被发现动态稳定。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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