Title of article :
Computational Investigation of Structure and Reactivity of Methyl Hydrazinecarbodithioate
Author/Authors :
Singh, Bhuvanendra Department of Chemistry - ITM University - Gwalior, INDIA , Singh, Rajeev Department of Chemistry - Institute of Information Technology and Management - Gwalior, INDIA , Singh, Bhoop Department of Chemistry - Institute of Information Technology and Management - Gwalior, INDIA , Kumar, Dilip Centre for Research for Chemical Sciences - Post Graduate Department of Chemistry - SMS Govt. College - Gwalior, INDIA
Abstract :
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.
Keywords :
PM7 , Molecular electrostatic surface potential , MP2 , Electron localization function , DFT
Journal title :
Astroparticle Physics