Wan Keming, Li Yalin, Wang Yan, Wei Gang
College of Chemistry and Chemical Engineering, Qingdao University, Qingdao 266071, China.
Nanomaterials (Basel). 2021 Jan 18;11(1):246. doi: 10.3390/nano11010246.
Two-dimensional (2D) nanomaterials have attracted increased interest and exhibited extended applications from nanotechnology to materials science, biomedicine, tissue engineering, as well as energy storage and environmental science. With the development of the synthesis and fabrication of 2D materials, a new family of 2D materials, metal carbides (MCs), revealed promising applications in recent years, and have been utilized for the fabrication of various functional 2D and three-dimensional (3D) nanomaterials for energy and environmental applications, ascribing to the unique physical and chemical properties of MCs. In this review, we present recent advance in the synthesis, fabrication, and applications of 2D and 3D MC-based nanomaterials. For this aim, we first summarize typical synthesis methods of MCs, and then demonstrate the progress on the fabrication of 2D and 3D MC-based nanomaterials. To the end, the applications of MC-based 2D and 3D materials for chemical batteries, supercapacitors, water splitting, photodegradation, removal of heavy metals, and electromagnetic shielding are introduced and discussed. This work provides useful information on the preparation, hybridization, structural tailoring, and applications of MC-based materials, and is expected to inspire the design and fabrication of novel and functional MXene materials with improved performance.
二维(2D)纳米材料已引起越来越多的关注,并在从纳米技术到材料科学、生物医学、组织工程以及能量存储和环境科学等领域展现出广泛的应用。随着二维材料合成与制备技术的发展,一类新型二维材料——金属碳化物(MCs)近年来展现出了广阔的应用前景,并因其独特的物理和化学性质,被用于制备各种用于能源和环境应用的功能性二维和三维(3D)纳米材料。在这篇综述中,我们介绍了二维和三维基于MC的纳米材料在合成、制备及应用方面的最新进展。为此,我们首先总结了MCs的典型合成方法,然后展示了二维和三维基于MC的纳米材料制备方面的进展。最后,介绍并讨论了基于MC的二维和三维材料在化学电池、超级电容器、水分解、光降解、重金属去除以及电磁屏蔽方面的应用。这项工作为基于MC的材料的制备、杂化、结构剪裁及应用提供了有用信息,并有望激发新型高性能功能性MXene材料的设计与制备。