Geometrical, Electronic, and Optical Properties of Rhombohedral B6O from First‐Principles Calculation

Gui‐Zhu Ran, Qi-Jun Liu, Zheng‐Tang Liu, Ya‐Le Tao
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Abstract

The first‐principles computational methods based on density functional theory are used to study B6O, including its structural, elastic, electronic, and optical properties. The results show that the obtained structural and mechanical parameters are in good agreement with the experimental values. The elastic constants, bulk modulus, shear modulus, Young's modulus, Poisson's ratio, and mechanical stability of rhombohedral B6O are studied. The results show that B6O has mechanical stability, anisotropy, and brittleness. The electronic structure of B6O is analyzed by band structure and density of states. Besides, the chemical bond is systematically explained in terms of Mulliken population and charge density. Finally, the optical characteristics of B6O are examined, encompassing aspects such as the complex dielectric function, conductivity, reflectivity, refractive index, absorption spectrum, and loss function.
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从第一原理计算得出的斜方体 B6O 的几何、电子和光学特性
采用基于密度泛函理论的第一原理计算方法研究了 B6O,包括其结构、弹性、电子和光学特性。结果表明,所获得的结构和力学参数与实验值十分吻合。研究了斜方体 B6O 的弹性常数、体积模量、剪切模量、杨氏模量、泊松比和力学稳定性。结果表明,B6O 具有机械稳定性、各向异性和脆性。通过能带结构和态密度分析了 B6O 的电子结构。此外,还用 Mulliken population 和电荷密度系统地解释了化学键。最后,研究了 B6O 的光学特性,包括复介电常数、电导率、反射率、折射率、吸收光谱和损耗函数等方面。
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