Synthesis of polymethylene-: B -poly(vinyl acetate) block copolymer via visible light induced radical polymerization and its application

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Abstract

New well-defined amphiphilic polymethylene-b-poly(vinyl acetate) (PM-b-PVAc) diblock copolymers were synthesized via a tandem strategy combining polyhomologation of ylides, chain-end functionalization and a visible light induced degenerative iodine transfer polymerization using decacarbonyldimanganese (Mn2(CO)10). Firstly, an iodo terminated polymethylene (PM-I) was prepared by polyhomologation of ylides initiated by a new organic borane based on catecholborane followed by functional group transformation using iodine as the end-capping reagent. Then, a series of amphiphilic PM-b-PVAc diblock copolymers with controlled molecular weight (Mn = 5530-17 020 g mol-1) and relatively narrow molecular weight distribution (D = 1.31-1.45) were obtained efficiently through a visible light induced degenerative iodine transfer polymerization of vinyl acetate (VAc) using PM-I as macroinitiator in the presence of Mn2(CO)10 under weak visible light irradiation at 40 °C. The micelles of such an amphiphilic diblock copolymer formed in tetrahydrofuran were observed by transmission electron microscopy (TEM). Moreover, the fabrication of porous films using PM-b-PVAc diblock copolymers via a static breath-figure process was investigated.

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Wang, H., Xu, F., Cui, K., Zhang, H., Huang, J., Zhao, Q., … Ma, Z. (2017). Synthesis of polymethylene-: B -poly(vinyl acetate) block copolymer via visible light induced radical polymerization and its application. RSC Advances, 7(67), 42484–42490. https://doi.org/10.1039/c7ra06908a

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