Structures and Energies of Singlet Silacyclopropenylidene and 14 Higher Lying C2SiH2Isomers

Gernot Frenking, Richard B. Remington, Henry F. Schaefer

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Abstract

The closed-shell molecular structures and relative energies of 15 different isomers of the formula C2SiH2have been investigated via nonempirical molecular electronic structure theory. Eight structures were found to be minima on the self-consistent-field potential energy hypersurface by using a double-ζ (DZ) basis set. The three lowest lying isomers have further been optimized with the DZ basis set augmented by polarization functions (DZ+P), and vibrational frequencies and IR intensities were obtained at this level of theory by using analytical gradients and second derivatives. Correlation energies have been predicted at the DZ+P level via configuration interaction including all single and double excitations of the Valence orbitals (DZ+P CI). 3-Silacyclopropenylidene (1) has clearly been found to be the global minimum on the singlet C2SiH2potential energy hypersurface. Vinylidenesilene (2) and silylenylacetylene (3) are 17 and 22 kcal/mol higher in energy, respectively (DZ+P CI). While 1, 2, and 3 might experimentally be observed, the other isomers are higher in energy, and it is less likely that they will soon be identified.

Original languageEnglish
Pages (from-to)2169-2173
Number of pages5
JournalJournal of the American Chemical Society
Volume108
Issue number9
DOIs
StatePublished - 1986
Externally publishedYes

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