Hartman Tomáš, Sofer Zdeněk
Department of Inorganic Chemistry , University of Chemistry and Technology Prague , Technická 5 , 166 28 Prague 6 , Czech Republic.
ACS Nano. 2019 Aug 27;13(8):8566-8576. doi: 10.1021/acsnano.9b04466. Epub 2019 Jul 22.
Two-dimensional materials have been extensively studied over the last two decades as they represent a class of materials with properties applicable in catalysis, sensing, optical devices, nanoelectronics, supercapacitors, and semiconductors. The properties of 2D materials can be tuned by exfoliation into mono- or few-layered systems and mainly by surface modification, which can result, for example, in altering the band gap or enhancing material stability toward degradation. This review focuses on the derivatization of group 14 layered materials beyond graphene silicene, germanene, and stanene and summarizes their preparation as well as chemical and physical properties. This review provides the current state-of-the-art in the field and provides a perspective for future development in the field of chemical derivatization of 2D materials beyond graphene.
在过去二十年中,二维材料得到了广泛研究,因为它们代表了一类具有适用于催化、传感、光学器件、纳米电子学、超级电容器和半导体等领域特性的材料。二维材料的特性可以通过剥离成单层或少数层系统来调节,主要是通过表面改性,这例如可以导致改变带隙或增强材料对降解的稳定性。本综述重点关注除石墨烯、硅烯、锗烯和锡烯之外的第14族层状材料的衍生化,并总结它们的制备以及化学和物理性质。本综述提供了该领域的当前技术水平,并为石墨烯之外二维材料化学衍生化领域的未来发展提供了一个视角。