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用于固态储氢的MXenes及基于MXene的金属氢化物:综述

MXenes and MXene-Based Metal Hydrides for Solid-State Hydrogen Storage: A Review.

作者信息

Ur Rehman Ata, Akram Khan Safyan, Mansha Muhammad, Iqbal Shahid, Khan Majad, Mustansar Abbas Syed, Ali Shahid

机构信息

Interdisciplinary Research Center for Hydrogen Technologies and Carbon Management, King Fahd University of Petroleum and Minerals, Dhahran, 31261, Saudi Arabia.

Nottingham Ningbo China Beacons of Excellence Research and Innovation Institute, University of Nottingham Ningbo China, Ningbo, 315100, China.

出版信息

Chem Asian J. 2024 Aug 19;19(16):e202400308. doi: 10.1002/asia.202400308. Epub 2024 Jul 6.

Abstract

Hydrogen-driven energy is fascinating among the everlasting energy sources, particularly for stationary and onboard transportation applications. Efficient hydrogen storage presents a key challenge to accomplishing the sustainability goals of hydrogen economy. In this regard, solid-state hydrogen storage in nanomaterials, either physically or chemically adsorbed, has been considered a safe path to establishing sustainability goals. Though metal hydrides have been extensively explored, they fail to comply with the set targets for practical utilization. Recently, MXenes, both in bare form and hybrid state with metal hydrides, have proven their flair in ascertaining the hydrides' theoretical and experimental hydrogen storage capabilities far beyond the fancy materials and current state-of-the-art technologies. This review encompasses the significant accomplishments achieved by MXenes (primarily in 2019-2024) for enhancing the hydrogen storage performance of various metal hydride materials such as MgH, AlH, Mg(BH), LiBH, alanates, and composite hydrides. It also discusses the bottlenecks of metal hydrides for hydrogen storage, the potential use of MXenes hybrids, and their challenges, such as reversibility, H losses, slow kinetics, and thermodynamic barriers. Finally, it concludes with a detailed roadmap and recommendations for mechanistic-driven future studies propelling toward a breakthrough in solid material-driven hydrogen storage using cost-effective, efficient, and long-lasting solutions.

摘要

在众多可持续能源中,氢能备受关注,尤其适用于固定式和车载运输应用。高效储氢是实现氢能经济可持续发展目标的关键挑战。在这方面,纳米材料中的固态储氢,无论是物理吸附还是化学吸附,都被视为实现可持续发展目标的一条安全途径。尽管金属氢化物已得到广泛研究,但它们未能达到实际应用的既定目标。最近,无论是纯净形式还是与金属氢化物形成的混合状态的MXenes,都已证明其在确定氢化物的理论和实验储氢能力方面的优势,远远超过了那些奇特材料和当前的先进技术。这篇综述涵盖了MXenes(主要在2019 - 2024年期间)在提高各种金属氢化物材料(如MgH、AlH、Mg(BH)、LiBH、铝酸盐和复合氢化物)的储氢性能方面取得的重大成果。它还讨论了金属氢化物储氢的瓶颈、MXenes混合物的潜在用途及其面临的挑战,如可逆性、氢损失、动力学缓慢和热力学障碍。最后,它以一份详细的路线图和建议作为总结,为以机理驱动的未来研究指明方向,推动采用经济高效且持久的解决方案在固态材料驱动的储氢方面取得突破。

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