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α、β、γ-石墨炔的电子结构、热导率、弹性和光学性质研究

Study of Electronic Structure, Thermal Conductivity, Elastic and Optical Properties of α, β, γ-Graphyne.

作者信息

Hou Xun, Xie Zhongjing, Li Chunmei, Li Guannan, Chen Zhiqian

机构信息

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

出版信息

Materials (Basel). 2018 Jan 25;11(2):188. doi: 10.3390/ma11020188.

Abstract

In recent years, graphyne was found to be the only 2D carbon material that has both sp and sp² hybridization. It has received significant attention because of its great potential in the field of optoelectronics, which arises due to its small band gap. In this study, the structural stability, electronic structure, elasticity, thermal conductivity and optical properties of α, β, γ-graphynes were investigated using density functional theory (DFT) systematically. γ-graphyne has the largest negative cohesive energy and thus the most stable structure, while the β-graphyne comes 2nd. Both β and γ-graphynes have sp-sp, sp-sp² and sp²-sp² hybridization bonds, of which γ-graphyne has shorter bond lengths and thus larger Young's modulus. Due to the difference in acetylenic bond in the structure cell, the effect of strain on the electronic structure varies between graphynes: α-graphyne has no band gap and is insensitive to strain; β-graphyne's band gap has a sharp up-turn at 10% strain, while γ-graphyne's band gap goes up linearly with the strain. All the three graphynes exhibit large free carrier concentration and these free carriers have small effective mass, and both free carrier absorption and intrinsic absorption are found in the light absorption. Based on the effect of strain, optical properties of three structures are also analyzed. It is found that the strain has significant impacts on their optical properties. In summary, band gap, thermal conductivity, elasticity and optical properties of graphyne could all be tailored with adjustment on the amount of acetylenic bonds in the structure cell.

摘要

近年来,人们发现石墨炔是唯一一种同时具有sp和sp²杂化的二维碳材料。由于其在光电子领域的巨大潜力,它受到了广泛关注,这种潜力源于其较小的带隙。在本研究中,我们系统地运用密度泛函理论(DFT)研究了α、β、γ - 石墨炔的结构稳定性、电子结构、弹性、热导率和光学性质。γ - 石墨炔具有最大的负内聚能,因此结构最稳定,β - 石墨炔次之。β和γ - 石墨炔都具有sp - sp、sp - sp²和sp² - sp²杂化键,其中γ - 石墨炔的键长较短,因此杨氏模量较大。由于结构单元中炔键的差异,应变对电子结构的影响在不同石墨炔之间有所不同:α - 石墨炔没有带隙,对应变不敏感;β - 石墨炔的带隙在10%应变时急剧上升,而γ - 石墨炔的带隙随应变线性增加。所有三种石墨炔都表现出较大的自由载流子浓度,且这些自由载流子的有效质量较小,在光吸收中同时发现了自由载流子吸收和本征吸收。基于应变的影响,还分析了三种结构的光学性质。结果发现应变对它们的光学性质有显著影响。总之,通过调整结构单元中炔键的数量,可以对石墨炔的带隙、热导率、弹性和光学性质进行调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1013/5848885/bf0ff3ff55d1/materials-11-00188-g001.jpg

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