Bark Hyunwoo, Thangavel Gurunathan, Liu Rui Jun, Chua Daniel H C, Lee Pooi See
School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.
Department of Materials Sciences and Engineering, National University of Singapore, Singapore, 117575, Singapore.
Small Methods. 2023 Aug;7(8):e2300077. doi: 10.1002/smtd.202300077. Epub 2023 Apr 17.
Thermal energy management is a crucial aspect of many research developments, such as hybrid and soft electronics, aerospace, and electric vehicles. The selection of materials is of critical importance in these applications to manage thermal energy effectively. From this perspective, MXene, a new type of 2D material, has attracted considerable attention in thermal energy management, including thermal conduction and conversion, owing to its unique electrical and thermal properties. However, tailored surface modification of 2D MXenes is required to meet the application requirements or overcome specific limitations. Herein, a comprehensive review of surface modification of 2D MXenes for thermal energy management is discussed. First, this work discusses the current progress in the surface modification of 2D MXenes, including termination with functional groups, small-molecule organic compound functionalization, and polymer modification and composites. Subsequently, an in situ analysis of surface-modified 2D MXenes is presented. This is followed by an overview of the recent progress in the thermal energy management of 2D MXenes and their composites, such as Joule heating, heat dissipation, thermoelectric energy conversion, and photothermal conversion. Finally, some challenges facing the application of 2D MXenes are discussed, and an outlook on surface-modified 2D MXenes is provided.
热能管理是许多研究领域(如混合电子和柔性电子、航空航天以及电动汽车)的关键方面。在这些应用中,材料的选择对于有效管理热能至关重要。从这个角度来看,MXene作为一种新型二维材料,因其独特的电学和热学性质,在热能管理(包括热传导和热转换)方面引起了相当大的关注。然而,需要对二维MXene进行定制的表面改性,以满足应用要求或克服特定限制。在此,本文对用于热能管理的二维MXene表面改性进行了全面综述。首先讨论了二维MXene表面改性的当前进展,包括官能团封端、小分子有机化合物功能化、聚合物改性和复合材料。随后对表面改性的二维MXene进行了原位分析。接着概述了二维MXene及其复合材料在热能管理方面的最新进展,如焦耳热、散热、热电能量转换和光热转换。最后讨论了二维MXene应用面临的一些挑战,并对表面改性的二维MXene进行了展望。