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通过有机碲介导的水相乳液聚合实现树枝状超支化聚丙烯酸酯及其拓扑嵌段聚合物的实用合成

Practical Synthesis of Dendritic Hyperbranched Polyacrylates and Their Topological Block Polymers by Organotellurium-Mediated Emulsion Polymerization in Water.

作者信息

Jiang Yuhan, Kibune Masato, Tosaka Masatoshi, Yamago Shigeru

机构信息

Institute for Chemical Research, Kyoto University, Uji, Kyoto, 611-0011, Japan.

出版信息

Angew Chem Int Ed Engl. 2023 Aug 28;62(35):e202306916. doi: 10.1002/anie.202306916. Epub 2023 Jul 20.

Abstract

The practical synthesis of structurally controlled hyperbranched polymers (HBPs) by organotellurium-mediated radical polymerization (TERP) in water under emulsion conditions is reported. Copolymerization of vinyltelluride named evolmer, which induces controlled branch structure, and acrylates with TERP chain transfer agent (CTA) in water afforded HBPs having dendron structure. The molecular weight, dispersity, branch number, and branch length of the HBPs were controlled by changing the amount of CTA, evolmer, and acrylate monomers. HB-poly(butyl acrylate)s (HBPBAs) with up to the 8 generation having an average of 255 branches were successfully synthesized. As the monomer conversion reached nearly quantitative and the obtained polymer particles were well dispersed in water, the method is highly suitable for synthesizing topological block polymers, block polymers consisting of different topologies. Thus, linear-block-HB, HB-block-linear, and HB-block-HB-PBAs with the controlled structure were successfully synthesized by adding the second monomer(s) to the macro-CTA. The intrinsic viscosity of the resulting homo- and topological block PBAs was systematically controlled by the degree of the branch, the branch length, and the topology. Therefore, the method opens the possibility of obtaining various HBPs with diverse branch structures and tuning the polymer properties by the polymer topology.

摘要

报道了在乳液条件下,通过有机碲介导的自由基聚合(TERP)在水中实际合成结构可控的超支化聚合物(HBP)。在水中,将诱导可控支化结构的乙烯基碲化物(名为evolmer)与丙烯酸酯与TERP链转移剂(CTA)进行共聚,得到具有树枝状结构的HBP。通过改变CTA、evolmer和丙烯酸酯单体的用量,可以控制HBP的分子量、分散度、支化数和支化长度。成功合成了平均具有255个支化的高达8代的超支化聚(丙烯酸丁酯)(HBPBA)。由于单体转化率几乎达到定量,且所得聚合物颗粒在水中分散良好,该方法非常适合合成拓扑嵌段聚合物,即由不同拓扑结构组成的嵌段聚合物。因此,通过向大分子CTA中加入第二种单体,成功合成了结构可控的线性-嵌段-HB、HB-嵌段-线性和HB-嵌段-HB-PBA。所得均聚物和拓扑嵌段PBA的特性粘度可通过支化度、支化长度和拓扑结构进行系统控制。因此,该方法为获得具有不同支化结构的各种HBP以及通过聚合物拓扑结构调节聚合物性能提供了可能性。

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