用于柔性器件应用的二维 MXenes

IF 10 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Sunil Kumar , Manish Taunk
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引用次数: 0

摘要

由于具有出色的导电性和机械柔韧性,二氧化二烯已成为开发各种设备的基础纳米材料。在制造各种柔性设备方面,这些特性使二氧化二烯领先于石墨烯等其他二维材料。易于合成和透明性为 MXenes 增添了新的羽翼,增强了其多功能性。本综述强调了 MXenes 独特的结构、机械特性、电学和表面特性,可用于开发各种柔性器件。综述探讨了 MXenes 在各种柔性器件应用中的作用,包括超级电容器、电池、太阳能电池、柔性传感器、电磁干扰屏蔽、电子皮肤(e-skin)、自供电系统、透明导电电极(TCE)、柔性显示器等储能解决方案。综述强调了二氧化二烯在提高柔性电子产品的耐用性和效率,从而延长其使用寿命方面的贡献。此外,还探讨了可穿戴设备和柔性设备中使用二氧化二烯的情况,以展示二氧化二烯在推动这些设备的设计和制造方面的潜力。基于二氧化二烯的材料不仅性能卓越,而且在推动新型应用方面发挥了重要作用,标志着柔性电子产品的重大转变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
2D MXenes for flexible device applications

Due to their distinguished electrical conductivity and mechanical flexibility, MXenes have emerged as fundamental nanomaterials in the development of various kinds of devices. These attributes position MXenes ahead of other 2D materials, such as graphene, in the fabrication of a wide array of flexible devices. Ease of synthesis and transparency add another feather to MXenes’ wings, enhancing their versatility. This review emphasizes the unique structural, mechanical characteristics, electrical, and surface characteristics of MXenes, tailored for the development of diverse flexible devices. The role of MXenes in a variety of flexible device applications, ranging from energy storage solutions such as supercapacitors, batteries, solar cells, flexible sensors, EMI shielding, electronic skins (e-skin), self-powered systems, transparent conductive electrodes (TCE), flexible displays, etc., has been explored. The review highlights the contribution of MXenes in improving the durability and efficiency of flexible electronics, thereby enhancing their operational lifespan. The use of MXenes in wearable and flexible devices has been explored to showcase their potential in advancing the design and manufacturing of these devices. MXene-based materials stand out not only for their exceptional performance but also for their role in driving forward novel applications, signifying a major shift in flexible electronics.

The review provides essential insights into MXenes-based flexible device development, offering a framework for future advancements in the field of flexible devices.

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来源期刊
Materials Today Physics
Materials Today Physics Materials Science-General Materials Science
CiteScore
14.00
自引率
7.80%
发文量
284
审稿时长
15 days
期刊介绍: Materials Today Physics is a multi-disciplinary journal focused on the physics of materials, encompassing both the physical properties and materials synthesis. Operating at the interface of physics and materials science, this journal covers one of the largest and most dynamic fields within physical science. The forefront research in materials physics is driving advancements in new materials, uncovering new physics, and fostering novel applications at an unprecedented pace.
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