Key Laboratory of Special Functional Aggregated Materials & Key Laboratory of Colloid and Interface Chemistry (Shandong University), Ministry of Education Department, School of Chemistry and Chemical Engineering, Shandong University, Jinan, 250199, P. R. China.
Chemistry. 2021 May 20;27(29):7897-7907. doi: 10.1002/chem.202100309. Epub 2021 Apr 30.
Ring-opening copolymerization (ROCP) of benzylsulfonyl macroheterocyclosiloxane (BSM) and five different cyclosiloxanes was systematically investigated. A general approach for the synthesis of benzylsulfonyl-containing silicone copolymers with various substituents, including methyl, vinyl, ethyl, and phenyl, was developed herein. A series of copolymers with variable incorporation (from 6 % to 82 %) of BSM were obtained by modifying the comonomer feed ratio and using KOH as the catalyst in a mixed solvent of dimethylformamide and toluene. The obtained copolymers exhibited various composition-dependent properties and unique viscoelasticity. Notably, the surface and fluorescent characteristics as well as the glass transition temperatures of the copolymers could be tailored by varying the amount of BSM. Unlike typical sulfone-containing polymers, such as poly(olefin sulfone)s, the prepared copolymers displayed excellent thermal and hydrolytic stability. The universal strategy developed in the present study provides a platform for the design of innovative silicone copolymers with adjustable structures and performance.
苯磺酰基大环硅氧烷(BSM)与五种不同环硅氧烷的开环共聚(ROCP)得到了系统研究。本文开发了一种通用的方法,用于合成具有各种取代基(包括甲基、乙烯基、乙基和苯基)的含苯磺酰基的硅酮共聚物。通过改变共聚单体进料比,并在二甲基甲酰胺和甲苯的混合溶剂中使用 KOH 作为催化剂,获得了一系列 BSM 含量不同(6%至 82%)的共聚物。所得共聚物表现出各种组成依赖性的性质和独特的粘弹性。值得注意的是,通过改变 BSM 的用量,可以调整共聚物的表面和荧光特性以及玻璃化转变温度。与典型的含砜聚合物(如聚(烯烃砜))不同,所制备的共聚物表现出优异的热稳定性和水解稳定性。本研究中开发的通用策略为设计具有可调结构和性能的新型硅酮共聚物提供了一个平台。