首页> 外文期刊>RSC Advances >Recent advances on the thermal destabilization of Mg-based hydrogen storage materials
【24h】

Recent advances on the thermal destabilization of Mg-based hydrogen storage materials

机译:镁基储氢材料热失稳的最新进展

获取原文
           

摘要

Magnesium hydride and its compounds have a high hydrogen storage capacity and are inexpensive, and thus have been considered as one of the most promising hydrogen storage materials for on-board applications. Nevertheless, Mg/MgH _(2) systems suffer from great drawbacks in terms of kinetics and thermodynamics for hydrogen uptake/release. Over the past decades, although significant progress has been achieved with respect to hydrogen sorption kinetics in Mg/MgH _(2) systems, their high thermal stability remains the main drawback, which hinders their practical applications. Accordingly, herein, we present a brief summary of the synthetic routes and a comprehensive overview of the advantages and disadvantages of the promising strategies to effectively tune the thermodynamics of Mg-based materials, such as alloying, nanostructuring, metastable phase formation, changing reaction pathway, and nano Mg-based composites. Among them nanostructuring and metastable phase formation, which have the superiority of changing the thermodynamics without affecting the hydrogen capacity, have attracted increasing interest in this field. To further optimize the hydrogen storage performance, we specially emphasize novel nanostructured materials, which have the advantage of combining alloy engineering, nanostructuring and the synergistic effect to change the thermodynamics of Mg/MgH _(2) to some extent. Furthermore, the remaining challenges and the directions of further research on MgH _(2) , including the fundamental mechanism of the Mg–H bond instability, advanced synthetic routes, stabilizing nanostructures, and predicting novel composite materials, are proposed.
机译:氢化镁及其化合物具有高的储氢能力且价格便宜,因此被认为是车载应用中最有希望的储氢材料之一。然而,Mg / MgH_(2)系统在吸收和释放氢的动力学和热力学方面具有很大的缺点。在过去的几十年中,尽管在Mg / MgH_(2)系统中的氢吸附动力学方面已经取得了重大进展,但是它们的高热稳定性仍然是主要缺点,这阻碍了它们的实际应用。因此,在本文中,我们对合成路线进行了简要概述,并对有效调整镁基材料的热力学(如合金化,纳米结构,亚稳态相形成,改变反应路径)的有前途的策略的优缺点进行了全面概述。 ,以及基于纳米镁的复合材料。其中具有在不影响氢容量的情况下改变热力学的优势的纳米结构和亚稳态相的形成引起了人们对该领域的越来越大的兴趣。为了进一步优化储氢性能,我们特别强调了新型纳米结构材料,该材料具有将合金工程,纳米结构和协同效应相结合的优势,可以在一定程度上改变Mg / MgH _(2)的热力学。此外,提出了MgH _(2)尚存的挑战和进一步研究的方向,包括Mg-H键不稳定性的基本机理,先进的合成路线,稳定的纳米结构以及预测新型复合材料。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号