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新型各向异性绿色磷烯的应变可调电子和光学性质:第一性原理研究

Strain-tunable electronic and optical properties of novel anisotropic green phosphorene: a first-principles study.

作者信息

Chen Qing-Yuan, Liu Ming-Yang, Cao Chao, He Yao

机构信息

Department of Physics, Yunnan University, No. 2 Green Lake North Road, Wu Hua Qu Kunming, Yunnan Province 650091, People's Republic of China.

出版信息

Nanotechnology. 2019 Aug 16;30(33):335710. doi: 10.1088/1361-6528/ab1dc1. Epub 2019 Apr 29.

Abstract

The effect of in-layer strain on the optical and electrical properties of monolayer green phosphorene, a new anisotropic two-dimensional (2D) material, has been systematically studied. The studied strain includes in-layer uniaxial strain and biaxial strain. Green phosphorene can be viewed as a combination of black and blue phosphorene segments in regular order. We adopt the HSE06 method to correct the calculated results. The results reveal that, firstly, strain-free monolayer green phosphorene is a stable direct band gap 2D semiconductor with the anisotropic optical property. The transmittance of infrared and visible light along the zigzag direction is better than that along the armchair direction. However, the transmittance of the UV-light along the armchair direction is better than that along the zigzag direction. Secondly, the optical properties, such as the absorption coefficient and reflectivity, along armchair and zigzag direction respond very differently to the various applied strains. As for the electronic properties, the band gap exhibits different changing trends by applying either in-layer biaxial strain or uniaxial strain in different directions. Besides, the near-band-edge electronic orbitals exhibit different bond nature in different directions. These results suggest that green phosphorene shows strong anisotropy in electronic and optical properties. By calculating and comparing the energies of near-band-edge states after applying different strains on green phosphorene, the reason for the anisotropy of the new 2D material is analyzed. This study implies that the electronic and optical properties of green phosphorene, a stable direct band gap anisotropic semiconductor, could be efficiently tuned by in-layer biaxial or uniaxial strain. Therefore, green phosphorene can be used in linear polarizers and other anisotropic photoelectric devices.

摘要

层内应变对新型各向异性二维材料单层绿色磷烯的光学和电学性质的影响已得到系统研究。所研究的应变包括层内单轴应变和双轴应变。绿色磷烯可视为黑色和蓝色磷烯片段按规则顺序的组合。我们采用HSE06方法校正计算结果。结果表明,首先,无应变的单层绿色磷烯是一种具有各向异性光学性质的稳定直接带隙二维半导体。红外光和可见光沿锯齿方向的透过率优于沿扶手椅方向的透过率。然而,紫外光沿扶手椅方向的透过率优于沿锯齿方向的透过率。其次,沿扶手椅和锯齿方向的光学性质,如吸收系数和反射率,对各种施加应变的响应差异很大。至于电学性质,通过施加层内双轴应变或不同方向的单轴应变,带隙呈现不同的变化趋势。此外,近带边电子轨道在不同方向表现出不同的键性质。这些结果表明绿色磷烯在电学和光学性质上表现出很强的各向异性。通过计算和比较在绿色磷烯上施加不同应变后近带边态的能量,分析了这种新型二维材料各向异性的原因。该研究表明,稳定的直接带隙各向异性半导体绿色磷烯的电学和光学性质可通过层内双轴或单轴应变有效调控。因此,绿色磷烯可用于线性偏振器和其他各向异性光电器件。

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