Exploring the impact of MXene-based materials on hydrogen storage performance: Experimental insights, applications, and challenges

IF 7.9 3区 材料科学 Q1 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Turkan Kopac
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引用次数: 0

Abstract

The hydrogen storage potential of 2D transition metal carbides and nitrides, called MXenes, has attracted interest due to their compositional variability, tunability, compatibility, and reversibility, making them promising hydrogen storage candidates. This study aims to comprehensively review recent experimental publications on MXene-based hydrogen storage, providing a global overview of advancements and experimental evidence. A thorough review has underscored MXenes' potential as catalysts for enhancing metal hydride-based hydrogen storage and elucidates the mechanisms underlying their performance improvement. This research provides a framework for designing high-performance composite catalysts with MXenes, optimizing metal hydrides for high storage capacity, rapid kinetics, and low operating temperatures. The findings elucidate the enhancement of hydrides with MXenes, facilitating the development of effective hydrogen storage materials. Furthermore, this research delineates prospects, obstacles, and potential developments for advancing hydrogen storage and utilizing MXenes as catalysts, with the objective of creating sustainable hydrogen storage systems contributing to clean energy technologies.
探索基于mxene的材料对储氢性能的影响:实验见解,应用和挑战
二维过渡金属碳化物和氮化物(称为MXenes)的储氢潜力由于其成分可变性、可调性、相容性和可逆性而引起了人们的兴趣,使其成为有希望的储氢候选者。本研究旨在全面回顾最近关于基于mxeni的储氢的实验出版物,提供全球进展和实验证据的概述。一项全面的综述强调了MXenes作为增强金属氢化物基储氢催化剂的潜力,并阐明了其性能改善的机制。该研究为设计高性能MXenes复合催化剂提供了框架,优化了金属氢化物的高存储容量、快速动力学和低工作温度。这些发现阐明了MXenes对氢化物的增强作用,促进了有效储氢材料的开发。此外,本研究描述了推进氢储存和利用MXenes作为催化剂的前景、障碍和潜在发展,目标是创建可持续的氢储存系统,为清洁能源技术做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.80
自引率
6.40%
发文量
174
审稿时长
32 days
期刊介绍: Materials Today Sustainability is a multi-disciplinary journal covering all aspects of sustainability through materials science. With a rapidly increasing population with growing demands, materials science has emerged as a critical discipline toward protecting of the environment and ensuring the long term survival of future generations.
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