Focused Review on the Synthesis of Titanium Carbide MXene via Fluorine-Free Methods for Lithium-Ion Batteries

IF 5.3 3区 工程技术 Q2 ENERGY & FUELS Energy & Fuels Pub Date : 2025-02-04 DOI:10.1021/acs.energyfuels.4c04303
Muhammad Ammar Munir,  and , Sadia Khalid*, 
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Abstract

The world is gradually moving toward more ecological and environmentally friendly energy production and storage mediums to tackle the ever-growing needs. These conventional methods and materials thus are not suitable enough to be continually practiced and consumed. MXenes are the next generation of two-dimensional materials (2DMs) that have been found to be an advanced alternative to the current graphene-based substitutes; however, the predominant method to produce MXene phases has been through fluoride-based precursors, which end up producing fluoride-based products causing significant environmental harm. This review aims to catalogue a number of significant investigations recently conducted with the objective of synthesizing MXenes with fluoride-free precursors and the structural and electrical performance of the resultant phases. Finally, the role of such MXene based electrodes for batteries has been discussed as well. The current challenges in fabrication of high performance MXene based batteries, possible opportunities, and future directions are discussed as well.

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锂离子电池用无氟法合成碳化钛MXene的研究进展
为满足日益增长的能源需求,世界正逐步朝着更加生态环保的能源生产和储存方式发展。因此,这些传统的方法和材料不适合持续地练习和使用。MXenes是下一代二维材料(2dm),已被发现是当前基于石墨烯的替代品的先进替代品;然而,生产MXene相的主要方法是通过氟基前体,最终生产出对环境造成重大危害的氟基产品。本文综述了最近进行的一些重要的研究,目的是用无氟前体合成MXenes,以及合成相的结构和电学性能。最后,还讨论了这种基于MXene的电极在电池中的作用。讨论了目前高性能MXene电池制造的挑战、可能的机遇和未来的发展方向。
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来源期刊
Energy & Fuels
Energy & Fuels 工程技术-工程:化工
CiteScore
9.20
自引率
13.20%
发文量
1101
审稿时长
2.1 months
期刊介绍: Energy & Fuels publishes reports of research in the technical area defined by the intersection of the disciplines of chemistry and chemical engineering and the application domain of non-nuclear energy and fuels. This includes research directed at the formation of, exploration for, and production of fossil fuels and biomass; the properties and structure or molecular composition of both raw fuels and refined products; the chemistry involved in the processing and utilization of fuels; fuel cells and their applications; and the analytical and instrumental techniques used in investigations of the foregoing areas.
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