Dong Mengping, Wei Wei, Nan Ze, Yuan Ruimei, Zhang Miao, Lin Zhenhua, Shou Chunhui, Chang Jingjing
School of Microelectronics, Xidian University, Xi'an, 710071, China.
Advanced Interdisciplinary Research Center for Flexible Electronics, Xidian University, Xi'an, 710071, China.
Small. 2025 Jul 31:e05471. doi: 10.1002/smll.202505471.
MXene-based supercapacitors are becoming more flexible, portable, and highly integrated. Their exceptional quick charge/discharge, power density, and cycle life are drawing interest in energy storage devices. The paradigm shift in combination with printing technology offers a range of simple, low-cost, time-saving and environmentally friendly manufacturing techniques for supercapacitors, thus unlocking even greater potential for supercapacitors in future electronics. This review first summarized the synthesis of MXene materials, and the electrode structure of printed supercapacitors are introduced and discussed; after that, the printing technology of MXene-based supercapacitor electrodes and their multifunctional applications which beyond supercapacitors are also outlined; Lastly, the main obstacles and potential applications of MXene-based printed supercapacitors is outlined. In this review, current developments in MXene electrode materials for printed supercapacitors are examined. The aim is to provide more application prospects for the miniaturization of MXene-based printed supercapacitors. In addition, the versatility and wide range of applications of MXene are explored.
基于MXene的超级电容器正变得更加灵活、便携且高度集成。它们卓越的快速充放电性能、功率密度和循环寿命引发了人们对储能设备的兴趣。与印刷技术相结合的范式转变为超级电容器提供了一系列简单、低成本、省时且环保的制造技术,从而为超级电容器在未来电子领域释放出更大的潜力。本文首先总结了MXene材料的合成方法,并对印刷超级电容器的电极结构进行了介绍和讨论;之后,还概述了基于MXene的超级电容器电极的印刷技术及其超越超级电容器范畴的多功能应用;最后,概述了基于MXene的印刷超级电容器的主要障碍和潜在应用。在本文中,研究了用于印刷超级电容器的MXene电极材料的当前进展。目的是为基于MXene的印刷超级电容器的小型化提供更多应用前景。此外,还探索了MXene的多功能性和广泛应用范围。