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黑磷烯纳米管的可调带隙和光学性质

Tunable Bandgap and Optical Properties of Black Phosphorene Nanotubes.

作者信息

Li Chunmei, Xie Zhongjing, Chen Zhiqian, Cheng Nanpu, Wang Jinghui, Zhu Guoan

机构信息

Faculty of Materials and Energy, Southwest University, Chongqing 400715, China.

出版信息

Materials (Basel). 2018 Feb 19;11(2):304. doi: 10.3390/ma11020304.

Abstract

Black phosphorus (BP), a new two-dimensional material, has been the focus of scientists' attention. BP nanotubes have potential in the field of optoelectronics due to their low-dimensional effects. In this work, the bending strain energy, electronic structure, and optical properties of BP nanotubes were investigated by using the first-principles method based on density functional theory. The results show that these properties are closely related to the rolling direction and radius of the BP nanotube. All the calculated BP nanotube properties show direct bandgaps, and the BP nanotubes with the same rolling direction express a monotone increasing trend in the value of bandgap with a decrease in radius, which is a stacking effect of the compression strain on the inner atoms and the tension strain on the outer atoms. The bending strain energy of the zigzag phosphorene nanotubes (zPNTs) is higher than that of armchair phosphorene nanotubes (aPNT) with the same radius of curvature due to the anisotropy of the BP's structure. The imaginary part of the dielectric function, the absorption range, reflectivity, and the imaginary part of the refractive index of aPNTs have a wider range than those of zPNTs, with higher values overall. As a result, tunable BP nanotubes are suitable for optoelectronic devices, such as lasers and diodes, which function in the infrared and ultra-violet regions, and for solar cells and photocatalysis.

摘要

黑磷(BP)作为一种新型二维材料,一直是科学家们关注的焦点。由于其低维效应,BP纳米管在光电子学领域具有潜在应用。在这项工作中,基于密度泛函理论,采用第一性原理方法研究了BP纳米管的弯曲应变能、电子结构和光学性质。结果表明,这些性质与BP纳米管的滚动方向和半径密切相关。所有计算得到的BP纳米管性质均显示出直接带隙,且具有相同滚动方向的BP纳米管,其带隙值随半径减小呈单调递增趋势,这是内原子上的压缩应变和外原子上的拉伸应变的叠加效应。由于BP结构的各向异性,在相同曲率半径下,锯齿形磷烯纳米管(zPNTs)的弯曲应变能高于扶手椅形磷烯纳米管(aPNTs)。aPNTs的介电函数虚部、吸收范围、反射率和折射率虚部比zPNTs具有更宽的范围,总体值更高。因此,可调控的BP纳米管适用于在红外和紫外区域工作的光电器件,如激光器和二极管,以及太阳能电池和光催化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07d2/5849001/50d15d9a3efc/materials-11-00304-g001.jpg

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