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二维MoS2/TM2CO2(TM = Ti、Zr或Hf)异质双层膜的有趣电子特性:具有可调带隙的II型半导体。

Intriguing electronic properties of two-dimensional MoS2/TM2CO2 (TM = Ti, Zr, or Hf) hetero-bilayers: type-II semiconductors with tunable band gaps.

作者信息

Li Xinru, Dai Ying, Ma Yandong, Liu Qunqun, Huang Baibiao

机构信息

School of Physics, State Key Laboratory of Crystal Materials, Shandong University, Jinan 250100, People's Republic of China.

出版信息

Nanotechnology. 2015 Mar 27;26(13):135703. doi: 10.1088/0957-4484/26/13/135703. Epub 2015 Mar 9.

Abstract

Two-dimensional (2D) transition metal compound (TMC) monolayers, as well as their van der Waals heterostructures with unique properties, are fundamentally and technologically intriguing. Here, heterostructures consisting of a MoS2 monolayer and TM2CO2 (TM = Ti, Zr or Hf) monolayers are systematically researched by means of the density functional theory (DFT). Different from semiconductor/metal contacts, MoS2 and TM2CO2 monolayers are all semiconductors with band gaps ranging from 0.25-1.67 eV. According to rigorous screening of stacking patterns, MoS2/Zr2CO2 is shown to be an indirect type-II semiconductor with the maximum valence and minimum conduction bands spatially separated on opposite monolayers. Simultaneously, the interface charges transfer from Zr2CO2 to MoS2 results in a built-in field that separates the electrons and holes efficiently. Also, the smaller effective masses of electrons and the holes of band edges indicate the higher carrier mobility. Moreover, strain regulation can make the hetero-bilayer's character a semiconductor-semimetal-metal transition. The physical insights pave the way for the good performance of MoS2/TM2CO2 in next-generation electronic devices and photocatalysts.

摘要

二维(2D)过渡金属化合物(TMC)单层及其具有独特性质的范德华异质结构,在基础研究和技术应用方面都极具吸引力。在此,通过密度泛函理论(DFT)系统研究了由MoS2单层和TM2CO2(TM = Ti、Zr或Hf)单层组成的异质结构。与半导体/金属接触不同,MoS2和TM2CO2单层均为半导体,带隙范围为0.25 - 1.67 eV。通过对堆叠模式的严格筛选,MoS2/Zr2CO2被证明是一种间接II型半导体,其最高价带和最低导带在空间上分隔在相对的单层上。同时,界面电荷从Zr2CO2转移到MoS2导致形成一个内建电场,该电场有效地分离了电子和空穴。此外,带边电子和空穴的有效质量较小表明载流子迁移率较高。而且,应变调控可使异质双层的特性发生半导体 - 半金属 - 金属转变。这些物理见解为MoS2/TM2CO2在下一代电子器件和光催化剂中的良好性能铺平了道路。

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