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From Polymer to Monomer: Cleavage and Rearrangement of Si‐O‐Si Bonds after Oxidation Yielded an Ordered Cyclic Crystallized Structure
Authors:Yujing Zuo  Zhiming Gou  Jinfeng Cao  Zhou Yang  Haifeng Lu  Prof Shengyu Feng
Affiliation:1. Key Laboratory of Special Functional Aggregated Materials & Key Laboratory of Colloid and Interface Chemistry (Shandong University), Ministry of Education;2. School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100 (P. R. China)
Abstract:Polymerization reactions are very common in the chemical industry, however, the reaction in which monomers are obtained from polymers is rarely invesitgated. This work reveals for the first time that oxone can break the Si‐O‐Si bond and induce further rearrangement to yield an ordered cyclic structure. The oxidation of P1 , which is obtained by reaction of 2,2′‐1,2‐ethanediylbis(oxy)bis(ethanethiol) (DBOET) with 1,3‐divinyl‐1,1,3,3‐tetramethyldisiloxane (MMVi), with oxone yielded cyclic crystallized sulfone–siloxane dimer ( P1‐ox ) after unexpected cleavage and rearrangement of the Si‐O‐Si bond.
Keywords:cleavage  polymer  rearrangement  thiol ene
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