Fast and Selective Main-Chain Scission of Vinyl Polymers using the Domino Reaction in the Alternating Sequence for Trans-esterification

29 April 2024, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

This communication reports on vinyl polymers capable of selective and fast main-chain scission (MCS). The trick is the domino reaction in an alternating sequence of methyl 2-(trimethylsiloxymethyl)acrylate and 5,6-benzo-2-methylene-1,3-dioxepane, a cyclic ketene acetal for radical ring-opening polymerization. Removal of the trimethylsilyl group using Bu4N+‧F− readily led to MCS via irreversible transesterification of the ester backbone, affording a five-membered lactone fragment. The molar mass decreased drastically within 5 min, and no side reactions were observed. Control experiments suggest that the formation of a five-membered ring via a domino reaction is critical for fast and selective MCS. The terpol-ymers with methyl methacrylate and styrene also exhibited a large decrease in molar mass within 5 min. In addition, MCS was also observed for the heterogeneous reaction system in acidic aqueous media; treatment of the binary copolymer in a 50 wt% acetic acid solution resulted in a significant decrease in molar mass after 30 min. These results suggest efficient construction of degradable sites using a binary monomer system corresponding to the pendant trigger and ester backbone. Because this molecular design, which uses a combination of simple monomers, is applicable to terpolymers containing other vinyl monomers, it can provide various degradable vinyl polymers.

Keywords

Copolymerization
polymer degradation
deprotection
radical ring-opening polymerization

Supplementary materials

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Description
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Supporting Information
Description
Experimental procedures, 1H and 13C NMR spectra, TG–DTA and DSC curves, SECs.
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