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具有蜂窝状结构和半金属电子特性的二维碳氮化物CN纳米片。

Two-dimensional carbon nitride CN nanosheet with egg-comb-like structure and electronic properties of a semimetal.

作者信息

Bafekry A, Shahrokhi M, Shafique A, Jappor H R, Shojaei F, Feghhi S A H, Ghergherehchi M, Gogova D

机构信息

Department of Radiation Application, Shahid Beheshti University, Tehran, Iran.

Department of Physics, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium.

出版信息

Nanotechnology. 2021 Mar 2;32(21). doi: 10.1088/1361-6528/abd50c.

Abstract

In this study, the structural, electronic and optical properties of theoretically predicted CN monolayer structure are investigated by means of Density Functional Theory-based First-Principles Calculations. Phonon band dispersion calculations and molecular dynamics simulations reveal the dynamical and thermal stability of the CN single-layer structure. We found out that the CN monolayer has large negative in-plane Poisson's ratios along bothanddirection and the both values are almost four times that of the famous-pentagraphene. The electronic structure shows that CN monolayer is a semi-metal and has a Dirac-point in the BZ. The optical analysis using the random phase approximation method constructed over HSE06 illustrates that the first peak of absorption coefficient of the CN monolayer along all polarizations is located in therange of spectrum, while the second absorption peak occurs in the visible range, which suggests its potential applications in optical and electronic devices. Interestingly, optically anisotropic character of this system is highly desirable for the design of polarization-sensitive photodetectors. Thermoelectric properties such as Seebeck coefficient, electrical conductivity, electronic thermal conductivity and power factor are investigated as a function of carrier doping at temperatures 300, 400, and 500 K. In general, we predict that the CN monolayer could be a new platform for study of novel physical properties in two-dimensional semi-metal materials, which may provide new opportunities to realize high-speed low-dissipation devices.

摘要

在本研究中,通过基于密度泛函理论的第一性原理计算,研究了理论预测的CN单层结构的结构、电子和光学性质。声子能带色散计算和分子动力学模拟揭示了CN单层结构的动力学和热稳定性。我们发现,CN单层在x和y方向上具有较大的负面内泊松比,且这两个值几乎是著名的五边形石墨烯的四倍。电子结构表明,CN单层是一种半金属,在布里渊区有一个狄拉克点。使用基于HSE06构建的随机相位近似方法进行的光学分析表明,CN单层沿所有极化方向的吸收系数的第一个峰值位于光谱的范围内,而第二个吸收峰出现在可见光范围内,这表明其在光学和电子器件中的潜在应用。有趣的是,该系统的光学各向异性特性对于偏振敏感光探测器的设计非常理想。研究了塞贝克系数、电导率、电子热导率和功率因数等热电性质随温度300、400和500 K下载流子掺杂的变化。总的来说,我们预测CN单层可能是研究二维半金属材料新物理性质的一个新平台,这可能为实现高速低耗散器件提供新的机会。

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