Synthesis and structural study of ethylmethylsilanediol by quantum chemical calculations and IR and Raman spectroscopies

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Author
Rodríguez Ortega, M. P. G.
Montejo, Manuel
Marchal Ingraín, Antonio
Márquez López, Fernando
López Gonzalez, Juan Jesús
Publisher
SpringerDate
2012Subject
EthylmethylsilanediolVibrational spectrum
Synthesis
Molecular structure
Sol–gel intermediates
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Show full item recordAbstract
The intrinsic instability of small alkylsilanediols
and their propensity toward self-condensation have
been the main determiners of the scarce number of
experimental works dealing with their synthesis and
vibrational characterization. This is the case of the title
compound, ethylmethylsilanediol (EMSD), which preparation
and purification is, to the best of our knowledge,
firstly reported in the present work. Hence, we also report
the first records of the IR and Raman spectra of the molecule
that have been thoroughly analyzed and completely
assigned with the support of DFT calculations. Further, as a
previous step of the vibrational assignment, we accomplished
a thorough conformational analysis that allowed
indentifying five conformations that represent minima on
the potential energy surface (PES) of the molecule,
depending on the different arrangement that both, the alkyl
side chain and the –OH groups, can adopt. Finally, natural
bond orbital (NBO) calculations were implemented to
justify the stability order and the calculated geometries for
the set of conformers in terms of the stabilization derived
from the anomeric effect.