Hussain Iftikhar, Arifeen Waqas Ul, Khan Shahid Ali, Aftab Sikandar, Javed Muhammad Sufyan, Hussain Sajjad, Ahmad Muhammad, Chen Xi, Zhao Jiyun, Rosaiah P, Fawy Khaled Fahmi, Younis Adnan, Sahoo Sumanta, Zhang Kaili
Department of Mechanical Engineering, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon Tong, Hong Kong, People's Republic of China.
School of Mechanical Engineering, Yeungnam University, Daehak-ro, Gyeongsan-si, Gyeongbuk-do, 38541, South Korea.
Nanomicro Lett. 2024 Jun 14;16(1):215. doi: 10.1007/s40820-024-01418-0.
MXene has garnered widespread recognition in the scientific community due to its remarkable properties, including excellent thermal stability, high conductivity, good hydrophilicity and dispersibility, easy processability, tunable surface properties, and admirable flexibility. MXenes have been categorized into different families based on the number of M and X layers in MX, such as MX, MX, MX, and, recently, MX. Among these families, MX and MX, particularly TiC, have been greatly explored while limited studies have been given to MX MXene synthesis. Meanwhile, studies on the MX MXene family have developed recently, hence, demanding a compilation of evaluated studies. Herein, this review provides a systematic overview of the latest advancements in MX MXenes, focusing on their properties and applications in energy storage devices. The objective of this review is to provide guidance to researchers on fostering MX MXene-based nanomaterials, not only for energy storage devices but also for broader applications.
由于其卓越的性能,包括出色的热稳定性、高导电性、良好的亲水性和分散性、易于加工、可调节的表面性质以及令人钦佩的柔韧性,MXene在科学界已获得广泛认可。基于MX中M层和X层的数量,MXene已被分为不同的家族,如MX、MX、MX,以及最近的MX。在这些家族中,MX和MX,特别是TiC,已得到大量研究,而对MX MXene合成的研究有限。同时,对MX MXene家族的研究最近有所发展,因此,需要对评估研究进行汇编。在此,本综述提供了MX MXenes最新进展的系统概述,重点关注其在储能设备中的性质和应用。本综述的目的是为研究人员提供指导,以促进基于MX MXene的纳米材料的发展,不仅用于储能设备,还用于更广泛的应用。