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通过水相光引发聚合诱导自组装高效合成μ-A(BC)C型米克托臂星形聚合物组装体

Efficient Synthesis of μ-A(BC)C Miktoarm Star Polymer Assemblies via Aqueous Photoinitiated Polymerization-Induced Self-Assembly.

作者信息

Xie Gangyu, Wu Jiarui, Zhang Li, Tan Jianbo

机构信息

Department of Polymeric Materials and Engineering, School of Materials and Energy, Guangdong University of Technology, Guangzhou 510006, China.

Guangdong Provincial Key Laboratory of Functional Soft Condensed Matter, Guangzhou 510006, China.

出版信息

Langmuir. 2024 Aug 13;40(32):17098-17108. doi: 10.1021/acs.langmuir.4c02131. Epub 2024 Aug 1.

Abstract

In this study, green light-activated photoiniferter reversible addition-fragmentation chain transfer (RAFT) polymerization of glycerol methacrylate was performed using an ω,ω-heterodifunctional macro-RAFT agent. Because of the different RAFT controllability of two RAFT groups toward methacrylic monomers, only one RAFT group was activated under green light irradiation, leading to the formation of a diblock copolymer macro-RAFT agent with one RAFT group located at the chain end and the other RAFT group located between two blocks. The obtained diblock copolymer macro-RAFT agent was then used to mediate aqueous photoinitiated RAFT dispersion polymerization of diacetone acrylamide (DAAM), which formed μ-A(BC)C miktoarm star polymer assemblies with a diverse set of morphologies. Comparing with the ABC triblock copolymer, it was found that the architecture of the μ-A(BC)C miktoarm star polymer facilitated the formation of higher-order morphologies. Kinetic studies indicated that the aqueous photoinitiated RAFT dispersion polymerization exhibited ultrafast polymerization behavior, with quantitative monomer conversion being achieved within 5 min. Size exclusion chromatography analysis confirmed that good RAFT control was maintained during the polymerization. A morphological phase diagram for μ-A(BC)C miktoarm star polymer assemblies was constructed by varying the monomer concentration and the [DAAM]/[Macro-RAFT] ratio. We expect that this study not only develops an approach for the preparation of miktoarm star polymer assemblies but also provides mechanistic insights into the polymerization-induced self-assembly of nonlinear polymers.

摘要

在本研究中,使用ω,ω-异双官能大分子RAFT试剂进行了甲基丙烯酸甘油酯的绿光活化光引发转移终止剂可逆加成-断裂链转移(RAFT)聚合反应。由于两个RAFT基团对甲基丙烯酸单体的RAFT可控性不同,在绿光照射下只有一个RAFT基团被活化,从而形成了一种二嵌段共聚物大分子RAFT试剂,其中一个RAFT基团位于链端,另一个RAFT基团位于两个嵌段之间。然后,将所得的二嵌段共聚物大分子RAFT试剂用于介导双丙酮丙烯酰胺(DAAM)的水相光引发RAFT分散聚合反应,形成了具有多种形态的μ-A(BC)C型杂臂星形聚合物聚集体。与ABC三嵌段共聚物相比,发现μ-A(BC)C型杂臂星形聚合物的结构有利于形成高阶形态。动力学研究表明,水相光引发RAFT分散聚合反应表现出超快聚合行为,在5分钟内即可实现定量的单体转化率。尺寸排阻色谱分析证实,聚合过程中保持了良好的RAFT控制。通过改变单体浓度和[DAAM]/[大分子RAFT]比例,构建了μ-A(BC)C型杂臂星形聚合物聚集体的形态相图。我们期望这项研究不仅开发了一种制备杂臂星形聚合物聚集体的方法,还为非线性聚合物的聚合诱导自组装提供了机理见解。

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