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用于控制高分子量聚合物分散度的可见光光引发转移终止剂聚合反应

Visible Light Photoiniferter Polymerization for Dispersity Control in High Molecular Weight Polymers.

作者信息

Ma Qingchi, Qiao Greg G, An Zesheng

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, China.

Department of Chemical Engineering, University of Melbourne, Parkville, Melbourne, Victoria, 3010, Australia.

出版信息

Angew Chem Int Ed Engl. 2023 Nov 27;62(48):e202314729. doi: 10.1002/anie.202314729. Epub 2023 Oct 25.

Abstract

The synthesis of polymers with high molecular weights, controlled sequence, and tunable dispersities remains a challenge. A simple and effective visible-light controlled photoiniferter reversible addition-fragmentation chain transfer (RAFT) polymerization is reported here to realize this goal. Key to this strategy is the use of switchable RAFT agents (SRAs) to tune polymerization activities coupled with the inherent highly living nature of photoiniferter RAFT polymerization. The polymerization activities of SRAs were in situ adjusted by the addition of acid. In addition to a switchable chain-transfer coefficient, photolysis and polymerization kinetic studies revealed that neutral and protonated SRAs showed different photolysis and polymerization rates, which is unique to photoiniferter RAFT polymerization in terms of dispersity control. This strategy features no catalyst, no exogenous radical source, temporal regulation by visible light, and tunable dispersities in the unprecedented high molecular weight regime (up to 500 kg mol ). Pentablock copolymers with three different dispersity combinations were also synthesized, highlighting that the highly living nature was maintained even for blocks with large dispersities. T was lowered for high-dispersity polymers of similar MWs due to the existence of more low-MW polymers. This strategy holds great potential for the synthesis of advanced materials with controlled molecular weight, dispersity and sequence.

摘要

合成具有高分子量、可控序列和可调分散度的聚合物仍然是一项挑战。本文报道了一种简单有效的可见光控制的光引发转移终止剂可逆加成-断裂链转移(RAFT)聚合反应来实现这一目标。该策略的关键是使用可切换的RAFT试剂(SRA)来调节聚合活性,并结合光引发转移终止剂RAFT聚合固有的高活性本质。通过添加酸原位调节SRA的聚合活性。除了可切换的链转移系数外,光解和聚合动力学研究表明,中性和质子化的SRA表现出不同的光解和聚合速率,这在分散度控制方面是光引发转移终止剂RAFT聚合所特有的。该策略的特点是无需催化剂、无外源自由基源、通过可见光进行时间调控,以及在前所未有的高分子量范围(高达500 kg mol)内具有可调分散度。还合成了具有三种不同分散度组合的五嵌段共聚物,突出表明即使对于具有大分散度的嵌段,高活性本质也得以保持。由于存在更多低分子量聚合物,具有相似分子量的高分散度聚合物的玻璃化转变温度降低。该策略在合成具有可控分子量、分散度和序列的先进材料方面具有巨大潜力。

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