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Computational Investigation of Structure and Reactivity of Methyl Hydrazinecarbodithioate

机译:甲基肼二甲酸甲基二钠结构和反应性的计算研究

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In this study, we theoretically investigated Methyl hydrazinecarbodithioate by quantum chemical calculations for geometry optimization, vibration frequencies, and electronic structure parameters. The geometry optimization by DFT, ab initio MP2 method and the frequency calculation by DFT method was performed at the highest available Pople style 6-311G+ + (3df,3pd) basis set level. The semi-empirical calculations were performed by the latest PM7 method. The theoretically obtained results were compared with the experimental data. Conformational behavior, frontier molecular orbitals, molecular electrostatic potential, electron localization function, and non-covalent interaction plots were also analyzed. The study explained the geometry, conformational flexibility and relative stability of different conformers.
机译:在这项研究中,通过量子化学计算,理论上研究了几何优化,振动频率和电子结构参数的量子化学计算的甲基肼二酯。 DFT,AB Initio MP2方法的几何优化和DFT方法的频率计算是在最高可用的Pople风格6-311G + +(3DF,3PD)基础设定水平上进行的。通过最新的PM7方法进行半经验计算。将理论上取得的结果与实验数据进行比较。还分析了构象行为,前沿分子轨道,分子静电电位,电子定位功能和非共价相互作用图。该研究阐述了不同塑造剂的几何形状,构象灵活性和相对稳定性。

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