First Principles Investigation of the Optoelectronic Properties of Molybdenum Dinitride for Optical Sensing Applications

A. Ramanathan
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引用次数: 2

Abstract

The electronic and optical properties of the newly synthesized molybdenum dinitride (MoN2) in the hypothetical 2H structure analogous to MoS2 is investigated using the density functional theory (DFT) full potential linearized augmented plane wave (FP-LAPW) method and the modified Becke–Johnson (mBJ) approximation. The aim is to investigate the optoelectronic properties of this compound for potential optical sensing applications and compare with the capabilities of MoS2 in this field. As compared to MoS2, which is a semiconductor, MoN2 is found to be a semi metal from the band structure plots. The dielectric function, optical conductivity and the optical constants, namely, the refractive index, the reflectivity, the extinction and absorption coefficients, are evaluated and compared with those of MoS2 and discussed with reference to the sensing performance.
光传感用二氮化钼光电特性的第一性原理研究
采用密度泛函理论(DFT)、全势线性化增广平面波(FP-LAPW)方法和改进的Becke-Johnson (mBJ)近似,研究了新合成的二氮化钼(MoN2)的电子和光学性质。目的是研究该化合物在光学传感领域的光电特性,并与MoS2在该领域的能力进行比较。与MoS2相比,MoS2是一种半导体,从带结构图中发现MoN2是半金属。评估了其介电函数、光学电导率和光学常数,即折射率、反射率、消光系数和吸收系数,并与MoS2的光学常数进行了比较,并参考传感性能进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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