氢基储能材料:过去、近期进展与未来展望
材料科学
2020-06-17 v1 其他凝聚态物理
摘要
氢化镁在固态氢存储材料的出版物中占有最大份额。参与IEA Task 32氢基储能的国际专家镁组近期发表了两篇综述论文,介绍了该组聚焦于氢化镁基材料以及用于氢与储能的镁基化合物的活动。本综述文章不仅概述了镁基氢化物基础方面及其应用的最新活动,还对该主题给出了历史概览并勾勒了预期的未来发展。特别关注极端压力下Mg-H体系的理论与实验研究、基于MgH2体系的动力学与热力学、纳米结构化、新型镁基化合物与复合材料,以及镁基氢存储系统中的催化。最后,介绍了容纳MgH2的热储能与放大级氢存储系统。
引用
@article{arxiv.2005.03410,
title = {Materials for hydrogen-based energy storage: Past, recent progress and future outlook},
author = {Volodymyr A. Yartys and Marcello Baricco and Jose Bellosta von Colbe and Didier Blanchard and Robert C. Bowman and Darren P. Broom and Craig E. Buckley and Fei Chang and Ping Chen and Young Whan Cho and Jean-Claude Crivello and Fermin Cuevas and William I. F. David and Petra E. de Jongh and Roman V. Denys and Martin Dornheim and Michael Felderhoff and Yaroslav Filinchuk and George E. Froudakis and David M. Grant and Bjørn C. Hauback and Ladislav Havela and Teng He and Michael Hirscher and Terry D. Humphries and Torben R. Jensen and Sangryun Kim and Yoshitsugu Kojima and Michel Latroche and Hai-Wen Li and Mykhaylo V. Lototskyy and Joshua W. Makepeace and Kasper T. Møller and Lubna Naheed and Peter Ngene and Dag Noréus and Magnus Moe Nygård and Shin-ichi Orimo and Mark Paskevicius and Luca Pasquini and Dorthe B. Ravnsbæk and M. Veronica Sofianos and Terrence J. Udovic and Tejs Vegge and Gavin S. Walker and Colin J. Webb and Claudia Weidenthaler and Claudia Zlotea},
journal= {arXiv preprint arXiv:2005.03410},
year = {2020}
}