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首页> 外文期刊>The Journal of Chemical Physics >A DFT study on structural, vibrational properties, and quasiparticle band structure of solid nitromethane
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A DFT study on structural, vibrational properties, and quasiparticle band structure of solid nitromethane

机译:DFT研究固体硝基甲烷的结构,振动性质和准粒子能带结构

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We report a detailed theoretical study of the structural and vibrational properties of solid nitromethane using first principles density functional calculations. The ground state properties were calculated using a plane wave pseudopotential code with either the local density approximation, the generalized gradient approximation, or with a correction to include van der Waals interactions. Our calculated equilibrium lattice parameters and volume using a dispersion correction are found to be in reasonable agreement with the experimental results. Also, our calculations reproduce the experimental trends in the structural properties at high pressure. We found a discontinuity in the bond length, bond angles, and also a weakening of hydrogen bond strength in the pressure range from 10 to 12 GPa, picturing the structural transition from phase I to phase II. Moreover, we predict the elastic constants of solid nitromethane and find that the corresponding bulk modulus is in good agreement with experiments. The calculated elastic constants show an order of C _(11)> C_(22) > C_(33), indicating that the material is more compressible along the c-axis. We also calculated the zone center vibrational frequencies and discuss the internal and external modes of this material under pressure. From this, we found the softening of lattice modes around 8-11 GPa. We have also attempted the quasiparticle band structure of solid nitromethane with the G_0W_0 approximation and found that nitromethane is an indirect band gap insulator with a value of the band gap of about 7.8 eV with G_0W_0 approximation. Finally, the optical properties of this material, namely the absorptive and dispersive part of the dielectric function, and the refractive index and absorption spectra are calculated and the contribution of different transition peaks of the absorption spectra are analyzed. The static dielectric constant and refractive indices along the three inequivalent crystallographic directions indicate that this material has a considerable optical anisotropy.
机译:我们报告使用第一原理密度泛函计算的固体硝基甲烷的结构和振动特性的详细理论研究。使用具有局部密度近似,广义梯度近似或包含范德华相互作用的修正的平面波伪势代码来计算基态属性。我们使用色散校正计算出的平衡晶格参数和体积与实验结果合理吻合。同样,我们的计算重现了高压下结构性能的实验趋势。我们发现在10到12 GPa的压力范围内,键长,键角不连续,氢键强度也减弱,描绘了从I相到II相的结构转变。此外,我们预测了固体硝基甲烷的弹性常数,发现相应的体积模量与实验吻合良好。计算出的弹性常数的顺序为C _(11)> C_(22)> C_(33),表明该材料沿c轴的压缩性更好。我们还计算了区域中心的振动频率,并讨论了这种材料在压力下的内部和外部模式。由此,我们发现8-11 GPa附近的晶格模态软化。我们还尝试了以G_0W_0近似的固体硝基甲烷的准粒子能带结构,发现硝基甲烷是一种间接的带隙绝缘体,在G_0W_0的近似下,其带隙约为7.8 eV。最后,计算了该材料的光学特性,即介电函数的吸收和色散部分,以及折射率和吸收光谱,并分析了吸收光谱的不同跃迁峰的贡献。沿三个不等价晶体学方向的静态介电常数和折射率表明该材料具有相当大的光学各向异性。

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