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New perspectives on potential hydrogen storage materials using high pressure

机译:高压潜在储氢材料的新观点

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In addressing the global demand for clean and renewable energy, hydrogen stands out as the most suitable candidate for many fuel applications that require practical and efficient storage of hydrogen. Supplementary to the traditional hydrogen storage methods and materials, the high-pressure technique has emerged as a novel and unique approach to developing new potential hydrogen storage materials. Static compression of materials may result in significant changes in the structures, properties and performance that are important for hydrogen storage applications, and often lead to the formation of unprecedented phases or complexes that have profound implications for hydrogen storage. In this perspective article, 22 types of representative potential hydrogen storage materials that belong to four major classes—simple hydride, complex hydride, chemical hydride and hydrogen containing materials—were reviewed. In particular, their structures, stabilities, and pressure-induced transformations, which were reported in recent experimental works together with supporting theoretical studies, were provided. The important contextual aspects pertinent to hydrogen storage associated with novel structures and transitions were discussed. Finally, the summary of the recent advances reviewed and the insight into the future research in this direction were given.
机译:在满足全球对清洁和可再生能源的需求时,氢成为许多需要实际和有效存储氢的燃料应用的最合适的候选者。作为传统储氢方法和材料的补充,高压技术已成为开发新型潜在储氢材料的一种新颖独特的方法。材料的静态压缩可能会导致结构,性能和性能发生重大变化,这对于储氢应用很重要,并且通常会导致形成前所未有的相或配合物,对储氢产生深远影响。在此透视文章中,对22种代表性潜在储氢材料进行了归纳,这些材料分别属于四个主要类别-简单氢化物,复杂氢化物,化学氢化物和含氢材料。特别是,提供了它们的结构,稳定性和压力诱导的转变,这些都在最近的实验工作中进行了报道,并提供了理论支持。讨论了与新型结构和过渡相关的氢存储相关的重要方面。最后,总结了最近的进展,并对这一方向的未来研究提出了见识。

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