Two-dimensional MXene Nanomaterials: Preparation, Structure Modulation and the Applications in Electrochemical Energy Storage.

IF 2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Recent Patents on Nanotechnology Pub Date : 2024-01-01 DOI:10.2174/1872210517666230427161120
Yingchun Chen, Bei Yu, Lingling Peng
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Abstract

Background: MXenes have attracted intensive attention owing to their unique twodimensional (2D) layered structure, high specific surface area, excellent conductivity, superior surface hydrophilicity, and chemical stability. In recent years, selective etching of the A element layers from MAX phases by fluorine-containing etchants (HF, LiF-HCl, etc) is a common method to prepare multilayered MXene nanomaterials (NMs) with plentiful surface terminations. At present, many studies have been reported on the use of fluorine-free etchants (NaOH, ZnCl2, etc) to etch MAX phases. The properties of MXene NMs are dependent on their structures.

Objective: The purpose of this review is to focus on a comprehensive and systematical survey on the preparation, structure modulation, and applications of MXene NMs in electrochemical energy storage devices, including supercapacitors, lithium-ion battery, sodium-ion battery, potassium-ion battery, and aluminum-ion battery.

Methods: Extensive information related to the preparation and applications of 2D MXene NMs for electrochemical energy storage and their associated patents were collected. This review highlights the recently reported 2D MXene NMs which are used in supercapacitor and various metal ion.

Results: It is found that the preparation methods have great impacts on the layer spacing and surface terminations of MXenes, consequently affecting their performance. Hence, this paper summarizes the research progress of the preparation strategies, layer spacing and surface termination modulation of MXene NMs.

Conclusion: The applications of 2D MXene NMs in electrochemical energy storage are outlined. The forward-looking challenges and prospects for the development of MXenes are also proposed.

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二维 MXene 纳米材料:二维 MXene 纳米材料:制备、结构调制及在电化学储能中的应用。
背景:二氧杂环烯因其独特的二维(2D)层状结构、高比表面积、优异的导电性、超强的表面亲水性和化学稳定性而备受关注。近年来,利用含氟蚀刻剂(HF、LiF-HCl 等)从 MAX 相中选择性蚀刻 A 元素层是制备具有丰富表面端点的多层 MXene 纳米材料(NMs)的常用方法。目前,已有许多关于使用无氟蚀刻剂(NaOH、ZnCl2 等)蚀刻 MAX 相的研究报道。MXene NMs 的特性取决于其结构:本综述旨在全面系统地研究 MXene NMs 的制备、结构调控以及在电化学储能设备(包括超级电容器、锂离子电池、钠离子电池、钾离子电池和铝离子电池)中的应用:方法:收集了有关二维 MXene NMs 在电化学储能领域的制备和应用及其相关专利的大量信息。本综述重点介绍了最近报道的用于超级电容器和各种金属离子的二维 MXene NMs:结果:研究发现,制备方法对 MXenes 的层间距和表面端接有很大影响,进而影响其性能。因此,本文总结了 MXene NMs 的制备策略、层间距和表面终止调制的研究进展:结论:本文概述了二维 MXene NMs 在电化学储能中的应用。结论:概述了二维 MXene NMs 在电化学储能中的应用,并提出了 MXene 的前瞻性挑战和发展前景。
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来源期刊
Recent Patents on Nanotechnology
Recent Patents on Nanotechnology NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
4.70
自引率
10.00%
发文量
50
审稿时长
3 months
期刊介绍: Recent Patents on Nanotechnology publishes full-length/mini reviews and research articles that reflect or deal with studies in relation to a patent, application of reported patents in a study, discussion of comparison of results regarding application of a given patent, etc., and also guest edited thematic issues on recent patents in the field of nanotechnology. A selection of important and recent patents on nanotechnology is also included in the journal. The journal is essential reading for all researchers involved in nanotechnology.
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