Ampong Daniel Nframah, Agyekum Emmanuel, Agyemang Frank Ofori, Mensah-Darkwa Kwadwo, Andrews Anthony, Kumar Anuj, Gupta Ram K
Department of Materials Engineering, College of Engineering, Kwame Nkrumah University of Science and Technology, Kumasi, Ghana.
Department of Material Science and Engineering, Hohai University, Nanjing, China.
Discov Nano. 2023 Feb 3;18(1):3. doi: 10.1186/s11671-023-03786-9.
A new, sizable family of 2D transition metal carbonitrides, carbides, and nitrides known as MXenes has attracted a lot of attention in recent years. This is because MXenes exhibit a variety of intriguing physical, chemical, mechanical, and electrochemical characteristics that are closely linked to the wide variety of their surface terminations and elemental compositions. Particularly, MXenes are readily converted into composites with materials including oxides, polymers, and CNTs, which makes it possible to modify their characteristics for a variety of uses. MXenes and MXene-based composites have demonstrated tremendous promise in environmental applications due to their excellent reducibility, conductivity, and biocompatibility, in addition to their well-known rise to prominence as electrode materials in the energy storage sector. The remarkable characteristics of 2D MXene, including high conductivity, high specific surface area, and enhanced hydrophilicity, account for the increasing prominence of its use in storage devices. In this review, we highlight the most recent developments in the use of MXenes and MXene-based composites for electrochemical energy storage while summarizing their synthesis and characteristics. Key attention is paid to applications in supercapacitors, batteries, and their flexible components. Future research challenges and perspectives are also described.
近年来,一种新型的、规模可观的二维过渡金属碳氮化物、碳化物和氮化物家族,即MXenes,引起了广泛关注。这是因为MXenes展现出各种引人入胜的物理、化学、机械和电化学特性,这些特性与其丰富多样的表面端基和元素组成密切相关。特别地,MXenes很容易与包括氧化物、聚合物和碳纳米管在内的材料形成复合材料,从而能够针对各种应用对其特性进行调整。除了在储能领域作为电极材料声名鹊起之外,MXenes及其基复合材料因其出色的还原性、导电性和生物相容性,在环境应用中也展现出巨大潜力。二维MXene的显著特性,包括高导电性、高比表面积和增强的亲水性,使得其在存储设备中的应用日益突出。在这篇综述中,我们重点介绍了MXenes及其基复合材料在电化学储能应用方面的最新进展,同时总结了它们的合成方法和特性。重点关注其在超级电容器、电池及其柔性组件中的应用。还描述了未来的研究挑战和前景。