三嗪基石墨烯和石墨二炔电光特性的第一原理研究

IF 2.9 4区 工程技术 Q1 MULTIDISCIPLINARY SCIENCES
Roya Majidi
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引用次数: 0

摘要

本手稿探讨了三嗪-石墨二乙烯(TA-GDY)和三嗪-及1,4-二乙炔苯石墨乙烯(TA-BGY)的电子和光学特性。研究采用密度泛函理论(DFT)方法对这些薄片进行了表征。研究结果表明,TA-GDY 和 TA-BGY 薄片都表现出直接带隙的半导体行为,使其具有潜在的纳米电子应用价值。在不同的极化条件下,它们的光学特性呈现出各向异性。TA-GDY 和 TA-BGY 的静态介电常数接近石墨烯。在可见光和紫外线区域,薄片的光导率为 105。TA-GDY和TA-BGY薄片在整个电磁波谱范围内显示出高效的透光性、高光吸收和导电性。这些研究结果表明,TA-GDY 和 TA-BGY 有希望成为创新的氮碳材料,用于光伏系统和需要抵御紫外线的应用中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
First Principles Study of Electro‐Optical Characteristics of Triazine‐Based Graphyne and Graphdiyne
This manuscript explores the electronic and optical characteristics of triazine‐graphdiyne (TA‐GDY) and triazine‐ and 1,4‐diethynylbenzene graphyne (TA‐BGY). The sheets are characterized using the density functional theory (DFT) method. The findings show that both TA‐GDY and TA‐BGY sheets exhibit semiconducting behavior with direct bandgaps, making them potentially valuable for nanoelectronic applications. The optical properties reveal anisotropic behavior under different polarization conditions. The static dielectric constants of TA‐GDY and TA‐BGY are close to that of graphene. The optical conductivity of the sheets is on the order of 105 in the visible and ultraviolet regions. TA‐GDY and TA‐BGY sheets show efficient light transmission and high optical absorption and conductivity across the electromagnetic spectrum. These findings demonstrate the promise of TA‐GDY and TA‐BGY as innovative nitrogen‐carbon materials for inclusion in photovoltaic systems and applications necessitating defense against ultraviolet rays.
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来源期刊
Advanced Theory and Simulations
Advanced Theory and Simulations Multidisciplinary-Multidisciplinary
CiteScore
5.50
自引率
3.00%
发文量
221
期刊介绍: Advanced Theory and Simulations is an interdisciplinary, international, English-language journal that publishes high-quality scientific results focusing on the development and application of theoretical methods, modeling and simulation approaches in all natural science and medicine areas, including: materials, chemistry, condensed matter physics engineering, energy life science, biology, medicine atmospheric/environmental science, climate science planetary science, astronomy, cosmology method development, numerical methods, statistics
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