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Na、 Be、 Mg掺杂单层MoS_2的第一性原理研究
引用本文:伏春平,黄浩,孙凌涛.Na、 Be、 Mg掺杂单层MoS_2的第一性原理研究[J].原子与分子物理学报,2019,36(3):522-526.
作者姓名:伏春平  黄浩  孙凌涛
作者单位:重庆文理学院,重庆文理学院,重庆文理学院
摘    要:本文基于第一性原理研究了Na、 Be、 Mg掺杂单层MoS_2的稳定性、能带结构、态密度以及电荷分布.得到Be掺杂单层MoS_2体系在实验上较容易实现,在三者掺杂体系中稳定性最强.与此同时,掺杂体系的带隙值都降低,有利于电子的跃迁,增强了导电性能;掺杂原子打破了原体系的平衡关系,导致周边S原子p轨道上的多余的电子会与近邻Mo原子d轨道上的电子产生相互作用;平衡的打破,也导致了杂质原子周围存在着电荷聚集和损失的现象.

关 键 词:MoS2    能带结构    第一性原理
收稿时间:2018/10/18 0:00:00
修稿时间:2018/11/19 0:00:00

First-principles study of monolayer MoS2 with Na, Be and Mg doping
Fu Chun-Ping,Huang Hao and Sun Ling-Tao.First-principles study of monolayer MoS2 with Na, Be and Mg doping[J].Journal of Atomic and Molecular Physics,2019,36(3):522-526.
Authors:Fu Chun-Ping  Huang Hao and Sun Ling-Tao
Institution:Dept.of Physics, Chongqing University of Arts and Sciences,Dept.of Physics, Chongqing University of Arts and Sciences and Dept.of Physics, Chongqing University of Arts and Sciences
Abstract:In this paper, the stability, band structure, density of States and charge distribution of Na Be and Mg doped single-layer MoS2 are studied by first principles method. It is found that the Be doped monolayer MoS2 system is easier to implement in experiments, and the stability is strongest in the three doped systems. Meanwhile, the band gap values of the doped systems were decrease, which is conducive to the electron transition and enhance the conductivity. The doping atoms break the electron balance of the original system, the neighboring S atoms of the doped atoms p orbit electrons interact with the electrons in the d orbit of the nearest Mo atoms.The breaking of equilibrium also leads to the phenomenon of charge aggregation and loss around impurity atoms.
Keywords:MoS2  band structures  first principles
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