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外电场下单壁碳纳米管电子与光学性质的第一性原理研究

First-principles study on electronic and optical properties of single-walled carbon nanotube under an external electric field.

作者信息

Bajjou Omar, Najim Abdelhafid, Rahmani Khalid, Khenfouch Mohammed

机构信息

Energy and Materials Engineering Laboratory "LGEM", Faculty of Sciences and Technics, Sultan Moulay Slimane University, BP 523, 23000, Beni Mellal, Morocco.

UNESCO UNISA Africa Chair in Nanosciences & Nanotechnology (U2ACN2), College of Graduate Studies, University of South Africa (UNISA), Pretoria, South Africa.

出版信息

J Mol Model. 2022 Mar 23;28(4):97. doi: 10.1007/s00894-022-05090-2.

Abstract

In this study, the electronic and optical properties of one-dimensional (1D) single-walled carbon nanotube (SWCNT) nanostructures, and under the external electric field [Formula: see text] applied in the z-direction, are investigated using density functional theory (DFT) calculations. The applied [Formula: see text] leads to significant modulation of the bandgap and changes the total density of states (TDOS), partial density of states (PDOS), absorption coefficient, dielectric function, optical conductivity, refractive index, and the loss function. The application of the [Formula: see text] on the SWCNT/Carboxyl structure leads to tighten its bandgap. The peaks of TDOS around the Fermi level are very weak. The absorption coefficient increases in visible range and decreases in ultraviolet (UV) domain proportionally with the [Formula: see text]. It is found that electronic structures and optical properties of the SWCNT/Carboxyl could be affected by the [Formula: see text]. All these results provide the important information for understanding and controlling the electronic and optical properties of 1D crystals by the [Formula: see text]. This study establishes a theoretical foundation for our future experimental work regarding optoelectronic properties of the SWCNT/Carboxyl material.

摘要

在本研究中,利用密度泛函理论(DFT)计算研究了一维(1D)单壁碳纳米管(SWCNT)纳米结构在沿z方向施加的外电场[公式:见正文]下的电子和光学性质。所施加的[公式:见正文]导致带隙的显著调制,并改变了态密度(TDOS)、分波态密度(PDOS)、吸收系数、介电函数、光导率、折射率和损耗函数。在SWCNT/羧基结构上施加[公式:见正文]会导致其带隙变窄。费米能级附近的TDOS峰值非常微弱。吸收系数在可见光范围内增加,在紫外(UV)区域与[公式:见正文]成比例地减小。发现SWCNT/羧基的电子结构和光学性质可能会受到[公式:见正文]的影响。所有这些结果为通过[公式:见正文]理解和控制一维晶体的电子和光学性质提供了重要信息。本研究为我们未来关于SWCNT/羧基材料光电性质的实验工作奠定了理论基础。

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