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具有长载流子寿命的二维八元原子层MSiN(M = Al、Ga和In)

Two-Dimensional Octuple-Atomic-Layer MSiN (M = Al, Ga and In) with Long Carrier Lifetime.

作者信息

Ding Yimin, Xue Kui, Zhang Jing, Yan Luo, Li Qiaoqiao, Yao Yisen, Zhou Liujiang

机构信息

Yangtze Delta Region Institute (Huzhou), University of Electronic Science and Technology of China, Huzhou 313001, China.

School of Physics, University of Electronic Science and Technology of China, Chengdu 610054, China.

出版信息

Micromachines (Basel). 2023 Feb 8;14(2):405. doi: 10.3390/mi14020405.

Abstract

Bulk III-nitride materials MN (M = Al, Ga and In) and their alloys have been widely used in high-power electronic and optoelectronic devices, but stable two-dimensional (2D) III-nitride materials, except h-BN, have not been realized yet. A new kind of 2D III-nitride material M2Si2N4 (M = Al, Ga and In) is predicted by choosing Si as the appropriate passivation element. The stability, electronic and optical properties of 2D M2Si2N4 materials are studied systematically based on first-principles calculations. The results show that Al2Si2N4 and Ga2Si2N4 are found to be indirect bandgap semiconductors, while In2Si2N4 is a direct bandgap semiconductor. Moreover, Al2Si2N4 and In2Si2N4 have good absorption ability in the visible light region, while Ga2Si2N4 is an ultraviolet-light-absorbing material. Furthermore, the carrier lifetimes of Ga2Si2N4 and In2Si2N4 are as large as 157.89 and 103.99 ns, respectively. All these desirable properties of M2Si2N4 materials make them attractive for applications in electronics and photoelectronics.

摘要

体相III族氮化物材料MN(M = Al、Ga和In)及其合金已广泛应用于高功率电子和光电器件中,但除h-BN外,稳定的二维(2D)III族氮化物材料尚未实现。通过选择Si作为合适的钝化元素,预测了一种新型的二维III族氮化物材料M2Si2N4(M = Al、Ga和In)。基于第一性原理计算,系统地研究了二维M2Si2N4材料的稳定性、电子和光学性质。结果表明,Al2Si2N4和Ga2Si2N4为间接带隙半导体,而In2Si2N4为直接带隙半导体。此外,Al2Si2N4和In2Si2N4在可见光区域具有良好的吸收能力,而Ga2Si2N4是一种紫外光吸收材料。此外,Ga2Si2N4和In2Si2N4的载流子寿命分别高达157.89和103.99 ns。M2Si2N4材料的所有这些理想特性使其在电子学和光电子学应用中具有吸引力。

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