Structural features of SnCl4–ortho-dimethoxybenzene complexes as derived from ab initio computations
Valentin P. Feshin, Elena Vasilievna Feshina
Abstract
Valentin P. Feshin, Elena Vasilievna Feshina
Abstract
Computations for the possible structures of SnCl4–ortho-dimethoxybenzene complexes and initial components have been performed by MP2/LANL2DZ method. Computation results have been compared with experimental data of 35Cl nuclear quadrupole resonance. cis-Octahedral structure of the complex through the coordination of both oxygen atoms has been confirmed. This complex differs considerably from the majority of studied tetrachlorostannane complexes of cis-octahedral structure in terms of the ratios of axial and equatorial Sn–Cl bond distances, p σ electron density, and 35Cl NQR frequencies for axial and equatorial chlorine atoms.
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Computations for the possible structures of SnCl4–ortho-dimethoxybenzene complexes and initial components have been performed by MP2/LANL2DZ method. Computation results have been compared with experimental data of 35Cl nuclear quadrupole resonance. cis-Octahedral structure of the complex through the coordination of both oxygen atoms has been confirmed. This complex differs considerably from the majority of studied tetrachlorostannane complexes of cis-octahedral structure in terms of the ratios of axial and equatorial Sn–Cl bond distances, p σ electron density, and 35Cl NQR frequencies for axial and equatorial chlorine atoms.
Key concepts: Nuclear quadrupole resonance, Octahedron, Chemistry, Crystallography, Quadrupole, Ab initio, Resonance (particle physics), Chlorine