Department of Chemical Engineering, Biotechnology and Materials, FCFM, University of Chile, Santiago, 7820436, Chile.
Department of Physics and Astronomy, University of Bologna, Bologna, 40127, Italy.
Adv Mater. 2023 Feb;35(5):e2207757. doi: 10.1002/adma.202207757. Epub 2022 Dec 20.
The large and rapidly growing family of 2D early transition metal carbides, nitrides, and carbonitrides (MXenes) raises significant interest in the materials science and chemistry of materials communities. Discovered a little more than a decade ago, MXenes have already demonstrated outstanding potential in various applications ranging from energy storage to biology and medicine. The past two years have witnessed increased experimental and theoretical efforts toward studying MXenes' mechanical and tribological properties when used as lubricant additives, reinforcement phases in composites, or solid lubricant coatings. Although research on the understanding of the friction and wear performance of MXenes under dry and lubricated conditions is still in its early stages, it has experienced rapid growth due to the excellent mechanical properties and chemical reactivities offered by MXenes that make them adaptable to being combined with other materials, thus boosting their tribological performance. In this perspective, the most promising results in the area of MXene tribology are summarized, future important problems to be pursued further are outlined, and methodological recommendations that could be useful for experts as well as newcomers to MXenes research, in particular, to the emerging area of MXene tribology, are provided.
二维早期过渡金属碳化物、氮化物和碳氮化物(MXenes)家族庞大且发展迅速,引起了材料科学和材料化学领域的极大兴趣。MXenes 是在十多年前发现的,它们已经在从储能到生物学和医学的各种应用中展示出了出色的潜力。在过去的两年中,人们越来越多地致力于研究 MXenes 作为润滑剂添加剂、复合材料中的增强相或固体润滑剂涂层时的力学和摩擦学性能。尽管对 MXenes 在干燥和润滑条件下的摩擦磨损性能的理解的研究仍处于早期阶段,但由于 MXenes 提供的优异力学性能和化学反应性,使其能够与其他材料结合,从而提高其摩擦学性能,因此该领域的研究发展迅速。在这篇观点文章中,总结了 MXenes 摩擦学领域最有前途的研究成果,概述了未来需要进一步研究的重要问题,并提供了方法学建议,这些建议对 MXenes 研究的专家和新手都可能有用,特别是对新兴的 MXenes 摩擦学领域。