Issue 34, 2009

The gas-phase structure of the decasilsesquioxane Si10O15H10

Abstract

The equilibrium molecular structure of the decasilsesquioxane, Si10O15H10, in the gas phase has been determined by gas electron diffraction. Molecular dynamics calculations were used to give amplitudes of vibration and differences between interatomic distances in the equilibrium structure and the vibrationally averaged distances that are given directly by the diffraction data. The molecules have D5h symmetry, and do not show the distortions that are apparent in the crystalline phase. The ten-membered silicon-oxygen rings are found to be particularly flexible in the gas phase, a phenomenon that was also seen in crystal structures. The Si–O bond lengths in the ten-membered rings are 161.6(2) pm long and in the eight-membered rings they are 162.2(3) pm, with Si–O–Si angles of 155.0(5) and 153.9(7)°, respectively.

Graphical abstract: The gas-phase structure of the decasilsesquioxane Si10O15H10

Supplementary files

Article information

Article type
Paper
Submitted
07 May 2009
Accepted
07 Jul 2009
First published
17 Jul 2009

Dalton Trans., 2009, 6843-6848

The gas-phase structure of the decasilsesquioxane Si10O15H10

D. A. Wann, F. Rataboul, A. M. Reilly, H. E. Robertson, P. D. Lickiss and D. W. H. Rankin, Dalton Trans., 2009, 6843 DOI: 10.1039/B909136J

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