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Ab-initio study of structural and vibrational properties of KN _3 under pressure

机译:压力下KN _3的结构和振动特性的从头算研究

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摘要

Structural stability and vibrational properties of KN _3 have been studied under pressure using the first principles calculations based on the density functional theory (DFT) as well as with semi empirical dispersion correction to the DFT to treat van der Waals interactions. The structural properties calculated through the dispersion correction are in good agreement with the experimental results when compared with the standard density functional theory. The lattice mode and the azide ion bending mode frequencies are found to be well reproduced by our calculations. As pressure increases, the E _g mode gets softened as observed in the experiment. Despite the softening of E _g mode, the enhancement of intramolecular interactions keeps the lattice stable.
机译:使用基于密度泛函理论(DFT)的第一性原理计算以及对DFT的半经验色散校正来处理KN _3的结构稳定性和振动特性,以处理范德华相互作用。与标准密度泛函理论相比,通过色散校正计算出的结构性能与实验结果吻合良好。通过我们的计算发现晶格模态和叠氮化物离子弯曲模态频率可以很好地再现。随着压力的增加,E _g模式变软,如在实验中观察到的那样。尽管E_g模态有所减弱,但分子内相互作用的增强使晶格稳定。

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