Jeong Jae Hwan, Kang Sojung, Kim Namwon, Joshi Rakesh, Lee Gwan-Hyoung
Department of Materials Science and Engineering, Yonsei University, Seoul, 03722, Republic of Korea.
Research Institute of Advanced Materials (RIAM), Seoul National University, Seoul 08826, Korea.
Phys Chem Chem Phys. 2022 May 11;24(18):10684-10711. doi: 10.1039/d1cp04831g.
Covalent functionalization of the surface is more crucial in 2D materials than in conventional bulk materials because of their atomic thinness, large surface-to-volume ratio, and uniform surface chemical potential. Because 2D materials are composed of two surfaces with no dangling bond, covalent functionalization enables us to improve or precisely modify the electrical, mechanical, and chemical properties. In this review, we summarize the covalent functionalization methods and related changes in properties. First, we discuss possible sites for functionalization. Consequently, functionalization techniques are introduced, followed by the direct synthesis of functionalized 2D materials and characterization methods of functionalized 2D materials. Finally, we suggest how the issues may be solved to enlarge the research area and understanding of the chemistry of 2D materials. This review will help in understanding the functionalization of 2D materials.
由于二维材料具有原子级的薄度、大的表面积与体积比以及均匀的表面化学势,其表面的共价功能化比传统块状材料更为关键。由于二维材料由两个没有悬键的表面组成,共价功能化使我们能够改善或精确调整其电学、力学和化学性质。在这篇综述中,我们总结了共价功能化方法以及相关的性质变化。首先,我们讨论了可能的功能化位点。随后,介绍了功能化技术,接着是功能化二维材料的直接合成以及功能化二维材料的表征方法。最后,我们提出了如何解决这些问题以扩大二维材料化学的研究领域和加深理解。这篇综述将有助于理解二维材料的功能化。