Electronic, optical, and vibrational properties of B3N3H6 from first-principles calculations

被引:0
作者
Yun-Dan Gan
Han Qin
Fu-Sheng Liu
Zheng-Tang Liu
Cheng-Lu Jiang
Qi-Jun Liu
机构
[1] Xi’an Modern Chemistry Research Institute,School of Science
[2] Xihua University,School of Physical Science and Technology
[3] Southwest Jiaotong University,State Key Laboratory of Solidification Processing
[4] Northwestern Polytechnical University,undefined
来源
Journal of Molecular Modeling | 2021年 / 27卷
关键词
Density functional theory; Electronic structure; Optical properties; B; N; H;
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摘要
The structural, electronic, optical, and vibrational properties of B3N3H6 have been calculated by means of the first-principles density functional theory (DFT) calculations within the generalized gradient approximation (GGA) and the local density approximation (LDA). The calculated structural parameters of B3N3H6 are in good agreement with experimental data. The obtained band structure of B3N3H6 shows that it has an indirect band gap with 5.007 eV, indicating that it presents insulation characteristic. The total and partial density of states (DOS) of B3N3H6 are given, which tell us the states of the orbital occupation. With the band structure and density of states, we have analyzed the optical properties including the complex dielectric function, refractive index, absorption, conductivity, loss function, and reflectivity. By the contrast, it is found that optical anisotropy is observed in the (001) direction and (100) direction. Moreover, the vibrational properties have been obtained and analyzed, showing that B3N3H6 is dynamically stable due to that there is no imaginary frequency. The frequencies associating with the vibrations are given, which show that B3N3H6 has a low mechanical modulus and thermal conductivity.
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