The reaction between dimethyl sulfoxide and Me 2 SiCl 2 leads to the formation of cyclic siloxanes, principally the more highly strained six-membered ring hexamethylcyclotrisiloxane (D 3 ), via linear α,ω-dichlorosiloxanes. At short reaction times (∼15 min), the reaction was shown not to be undergoing equilibration reactions (ligand metathesis) to a significant degree. A mechanism for the formation of D 3 and D 4 (octamethylcyclotetrasiloxane) is proposed that invokes conversion of a chlorosilane group into a sulfonium ion intermediate 12 . The preferential formation of D 3 over D 4 is attributed to the greater steric encumbrance of the activated chain termini (SiOS + Me 2 ) than in the corresponding hydrolysis reaction (SiOH). Both the chain extension reactions 12 → 3 and cyclization reactions 12 → D 3 are retarded, resulting in a higher selectivity (with DMSO as the oxygen source) for the intramolecular reaction producing D 3 than in the case of hydrolysis. The experimental results are inconsistent with silanone formation.
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Roux et al. (1998) studied this question.
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