Dynamic structure of organic compounds in solution according to NMR data and quantum mechanical calculations: I. Soman


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Abstract

Dynamic structure of Soman diastereoisomers has been studied with the goal of obtaining accurate information to simulate molecular mechanisms of its action on living systems. The potential energy surface for internal rotation about the single P–O and O–C bonds has been constructed in terms of the Møller–Plesset second-order perturbation theory using 6-311G(d,p) basis set. The relative contributions of different conformers have been estimated by solving the vibrational problem according to the large-amplitude vibration model. The conformational dependences of the 4JCF and 3JCP coupling constants for the S,S and S,R diastereoisomers of Soman have been calculated at the FPT DFT B3LYP/6-311++G(2df,2p) level of theory. The calculated vibrationally averaged coupling constants have been compared with the available experimental data to determine the structure of the most toxic Soman stereoisomer.

About the authors

T. A. Ganina

Faculty of Chemistry

Email: chertkov@org.chem.msu.ru
Russian Federation, Leninskie gory 1, Moscow, 119991

V. A. Chertkov

Faculty of Chemistry

Author for correspondence.
Email: chertkov@org.chem.msu.ru
Russian Federation, Leninskie gory 1, Moscow, 119991

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