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Single-chain crosslinked star polymers via intramolecular crosslinking of self-folding amphiphilic copolymers in water

机译:单链交联星形聚合物通过自折叠两亲共聚物在水中的分子内交联

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摘要

Single-chain crosslinked star polymers with multiple hydrophilic short arms and a hydrophobic core were created as novel microgel star polymers of single polymer chains. The synthetic process involves the intramolecular crosslinking of self-folding amphiphilic random copolymers in water. For this process, amphiphilic random copolymers bearing hydrophilic poly(ethylene glycol) (PEG) and hydrophobic olefin pendants were synthesized by ruthenium-catalyzed living radical copolymerization of PEG methyl ether methacrylate, dodecyl methacrylate and hydroxyl-functionalized methacrylates, and the in situ or postesterification of the hydroxyl pendants of the resulting copolymers with methacryloyl chloride. The olefin-bearing copolymers with 20–40 mol% hydrophobic units efficiently self-folded because of hydrophobic interactions in water. These folded structures were then crosslinked intramolecularly using a free radical initiator or a ruthenium catalyst to selectively yield single-chain crosslinked star polymers, whereas a counterpart containing 50 mol% hydrophobic units induced bimolecular aggregation in water to give double-chain crosslinked star polymers. The primary structure of the star polymers can be precisely controlled with random copolymer precursors. Owing to the PEG arm units, the star polymers further showed thermosensitive solubility in water.
机译:创建了具有多个亲水性短臂和一个疏水性核的单链交联星形聚合物,作为单聚合物链的新型微凝胶星形聚合物。合成过程涉及自折叠两亲无规共聚物在水中的分子内交联。对于该方法,通过钌催化的PEG甲基醚甲基丙烯酸甲酯,甲基丙烯酸十二烷基酯和羟基官能化的甲基丙烯酸酯的活性自由基共聚,以及原位或后酯化反应,合成了带有亲水性聚乙二醇(PEG)和疏水性烯烃侧基的两亲无规共聚物。所得共聚物的羟基侧基与甲基丙烯酰氯的混合物。具有20-40%mol%疏水单元的含烯烃共聚物由于在水中的疏水作用而有效地自折叠。然后使用自由基引发剂或钌催化剂将这些折叠结构分子内交联,以选择性地产生单链交联的星形聚合物,而含有50 mol%疏水单元的配对物则在水中引起双分子聚集,从而形成双链交联的星形聚合物。星形聚合物的一级结构可以用无规共聚物前体精确控制。由于PEG臂单元,星形聚合物进一步显示出对水的热敏溶解性。

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