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裸露的和功能化的二维碲烯结构的电子特性。

Electronic properties of bare and functionalized two-dimensional (2D) tellurene structures.

作者信息

Wines Daniel, Kropp Jaron A, Chaney Gracie, Ersan Fatih, Ataca Can

机构信息

Department of Physics, University of Maryland Baltimore County, Baltimore, MD 21250, USA.

出版信息

Phys Chem Chem Phys. 2020 Mar 25;22(12):6727-6737. doi: 10.1039/d0cp00357c.

Abstract

Recently, 2D tellurene (Te) structures have been experimentally synthesized. These structures possess high carrier mobility and stability which make them ideal candidates for applications in electronics, optoelectronics and energy devices. We performed density functional theory (DFT) and molecular dynamics (MD) simulations to investigate the stability and electronic structure of 2D α- and β-Te sheets, and hydrogen, oxygen, and fluorine functionalized counterparts, including spin-orbit coupling effects. Our calculations show that bare α and β-Te sheets are stable with band gaps of 0.44 eV and 1.02 eV respectively. When functionalized, α and β monolayers exhibit metallic properties, except for hydrogenated β-Te, which exhibits semiconducting properties with a band gap of 1.37 eV. We see that H, O and F destabilize the structure of α-Te. We also find that F and H cause β-Te layers to separate into functionalized atomic chains and O causes β-Te to transform into a Te3O2-like structure. We also studied single atom and molecule binding on the Te surface, the effects of adatom coverage, and the effects of functionalized Te on a GaSe substrate. Our results indicate that tellurene monolayers and functionalized counterparts are not only suitable for future optoelectronic devices, but can be used as metallic contacts in nanoscale junctions.

摘要

最近,二维碲(Te)结构已通过实验合成。这些结构具有高载流子迁移率和稳定性,使其成为电子、光电子和能量器件应用的理想候选材料。我们进行了密度泛函理论(DFT)和分子动力学(MD)模拟,以研究二维α - 和β - Te 片材以及氢、氧和氟功能化对应物的稳定性和电子结构,包括自旋轨道耦合效应。我们的计算表明,裸露的α和β - Te片材是稳定的,带隙分别为0.44 eV和1.02 eV。功能化后,α和β单层表现出金属特性,但氢化β - Te除外,它表现出带隙为1.37 eV的半导体特性。我们发现H、O和F会使α - Te的结构不稳定。我们还发现F和H会使β - Te层分离成功能化的原子链,而O会使β - Te转变为类似Te3O2的结构。我们还研究了Te表面上的单原子和分子结合、吸附原子覆盖率的影响以及功能化Te对GaSe衬底的影响。我们的结果表明,碲单层和功能化对应物不仅适用于未来的光电器件,还可用于纳米级结中的金属接触。

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