Lozovoy Kirill A, Izhnin Ihor I, Kokhanenko Andrey P, Dirko Vladimir V, Vinarskiy Vladimir P, Voitsekhovskii Alexander V, Fitsych Olena I, Akimenko Nataliya Yu
Faculty of Radiophysics, National Research Tomsk State University, Lenin Av. 36, 634050 Tomsk, Russia.
Scientific Research Company "Electron-Carat", Stryjska St. 202, 79031 Lviv, Ukraine.
Nanomaterials (Basel). 2022 Jun 28;12(13):2221. doi: 10.3390/nano12132221.
Today, two-dimensional materials are one of the key research topics for scientists around the world. Interest in 2D materials is not surprising because, thanks to their remarkable mechanical, thermal, electrical, magnetic, and optical properties, they promise to revolutionize electronics. The unique properties of graphene-like 2D materials give them the potential to create completely new types of devices for functional electronics, nanophotonics, and quantum technologies. This paper considers epitaxially grown two-dimensional allotropic modifications of single elements: graphene (C) and its analogs (transgraphenes) borophene (B), aluminene (Al), gallenene (Ga), indiene (In), thallene (Tl), silicene (Si), germanene (Ge), stanene (Sn), plumbene (Pb), phosphorene (P), arsenene (As), antimonene (Sb), bismuthene (Bi), selenene (Se), and tellurene (Te). The emphasis is put on their structural parameters and technological modes in the method of molecular beam epitaxy, which ensure the production of high-quality defect-free single-element two-dimensional structures of a large area for promising device applications.
如今,二维材料是全球科学家的关键研究课题之一。对二维材料感兴趣并不奇怪,因为凭借其卓越的机械、热、电、磁和光学性能,它们有望给电子学带来变革。类石墨烯二维材料的独特性能使其有潜力为功能电子学、纳米光子学和量子技术创造全新类型的器件。本文探讨了单元素的外延生长二维同素异形体:石墨烯(C)及其类似物(跨石墨烯)硼烯(B)、铝烯(Al)、镓烯(Ga)、铟烯(In)、铊烯(Tl)、硅烯(Si)、锗烯(Ge)、锡烯(Sn)、铅烯(Pb)、磷烯(P)、砷烯(As)、锑烯(Sb)、铋烯(Bi)、硒烯(Se)和碲烯(Te)。重点关注分子束外延法中的结构参数和工艺模式,这些参数和模式确保能够制备出大面积、高质量、无缺陷的单元素二维结构,以用于有前景的器件应用。