单层
材料科学
碳化硅
外延
蜂窝结构
蜂巢
单晶硅
光伏
碳化物
带隙
基质(水族馆)
纳米技术
MXenes公司
硅
凝聚态物理
光电子学
光伏系统
图层(电子)
复合材料
海洋学
物理
地质学
生物
生态学
作者
C. M. Polley,H. Fedderwitz,T. Balasubramanian,A. A. Zakharov,R. Yakimova,O. Bäcke,J. Ekman,S. Dash,Sergey Kubatkin,S. Lara-Avila
出处
期刊:Cornell University - arXiv
日期:2023-01-01
标识
DOI:10.48550/arxiv.2301.06498
摘要
The long theorized two-dimensional allotrope of SiC has remained elusive amid the exploration of graphenelike honeycomb structured monolayers. It is anticipated to possess a large direct band gap (2.5 eV), ambient stability, and chemical versatility. While $sp^{2}$ bonding between silicon and carbon is energetically favorable, only disordered nanoflakes have been reported to date. Here we demonstrate large-area, bottom-up synthesis of monocrystalline, epitaxial monolayer honeycomb SiC atop ultrathin transition metal carbide films on SiC substrates. We find the 2D phase of SiC to be almost planar and stable at high temperatures, up to 1200°C in vacuum. Interactions between the 2D-SiC and the transition metal carbide surface result in a Dirac-like feature in the electronic band structure, which in the case of a TaC substrate is strongly spin-split. Our findings represent the first step towards routine and tailored synthesis of 2D-SiC monolayers, and this novel heteroepitaxial system may find diverse applications ranging from photovoltaics to topological superconductivity.
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