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用于储氢的多孔金属有机骨架材料。

Porous metal-organic frameworks for hydrogen storage.

作者信息

Zhao Dian, Wang Xinxin, Yue Lianglan, He Yabing, Chen Banglin

机构信息

Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, College of Chemistry and Life Sciences, Zhejiang Normal University, Jinhua 321004, China.

Department of Chemistry, University of Texas at San Antonio, One UTSA Circle, San Antonio, Texas 78249-0698, USA.

出版信息

Chem Commun (Camb). 2022 Oct 4;58(79):11059-11078. doi: 10.1039/d2cc04036k.

Abstract

The high gravimetric energy density and environmental benefits place hydrogen as a promising alternative to the widely used fossil fuels, which is however impeded by the lack of safe, energy-saving and cost-effective H storage systems. The use of solid adsorbents as candidate materials offers a less energy-intensive way of storing hydrogen. The exceptional diversity and tunability of the chemical composition, topological structure, and surface chemistry together with large surface area position porous metal-organic frameworks as promising hydrogen storage material candidates. In this review, we first introduce several classes of important metal-organic frameworks for hydrogen storage, and then highlight the progress associated with the key challenges to be addressed, including the improvement of hydrogen-framework interaction required for enhancing room-temperature hydrogen storage capacities, and the optimization/balance of both gravimetric and volumetric storage/working capacities. In particular, the strategies used to tune and enhance hydrogen binding energies have been comprehensively reviewed. Future development prospects and related challenges of using porous metal-organic frameworks as hydrogen storage materials are also outlined. This feature review provides a wide perspective and insightful thoughts and suggestions for hydrogen storage using metal-organic frameworks, and promotes the further development of hydrogen storage materials to realize a hydrogen economy.

摘要

高重量能量密度和环境效益使氢成为广泛使用的化石燃料的一种有前景的替代品,然而,缺乏安全、节能且经济高效的储氢系统阻碍了氢的应用。使用固体吸附剂作为候选材料提供了一种能量密集度较低的储氢方式。化学成分、拓扑结构和表面化学的非凡多样性和可调节性,以及大表面积,使多孔金属有机框架成为有前景的储氢材料候选者。在这篇综述中,我们首先介绍几类用于储氢的重要金属有机框架,然后重点介绍与需要解决的关键挑战相关的进展,包括提高室温储氢容量所需的氢与框架相互作用,以及重量和体积储氢/工作容量的优化/平衡。特别是,已经全面综述了用于调节和增强氢结合能的策略。还概述了使用多孔金属有机框架作为储氢材料的未来发展前景和相关挑战。这篇专题综述为使用金属有机框架储氢提供了广阔的视角和深刻的思考与建议,并促进储氢材料进一步发展以实现氢能经济。

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