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首页> 外文期刊>RSC Advances >Facile, simple, and inexpensive ionic liquid, 1-phenyl-3-methylimidazole diphenyl phosphate, as an efficient phosphorus-based ligand for copper-catalyzed reverse atom transfer radical polymerization of methyl methacrylate
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Facile, simple, and inexpensive ionic liquid, 1-phenyl-3-methylimidazole diphenyl phosphate, as an efficient phosphorus-based ligand for copper-catalyzed reverse atom transfer radical polymerization of methyl methacrylate

机译:简便,简单,廉价的离子液体1-苯基-3-甲基咪唑二苯基磷酸酯,作为铜基甲基丙烯酸甲酯的反向原子转移自由基聚合的有效磷基配体

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Ligands play a vital role in atom transfer radical polymerization (ATRP) in solubilizing the transition-metal salt and adjusting the redox potential of the metal center. In general, nitrogen ligands work particularly well for copper-mediated ATRP, while phosphorus-based ligands are rarely used due to less effectiveness. Therefore, this work aims to explore for the first time a facile, simple, and inexpensive ionic liquid (IL), 1-phenyl-3-methylimidazole diphenyl phosphate ([Phmim][Ph2PO4]), as an efficient phosphorus ligand for CuBr2-mediated reverse ATRP. The key to success is ascribed to stronger complexation of the IL ligand with the catalyst and higher solubility of the resulting complex. The polymerizations proceeded in a controlled/“living” fashion, as evidenced by first-order kinetics, linear evolution of molecular weights with monomer conversion, and narrow molecular weight distributions. Effects of various experimental parameters—solvent, reaction temperature, IL, and molar ratio of CuBr2/[Phmim][Ph2PO4]—on the polymerization were investigated in detail. Furthermore, 1H NMR analysis confirmed the halogen-containing chain-end functionality of the resultant polymer.
机译:配体在原子转移自由基聚合(ATRP)中起着至关重要的作用,可溶解过渡金属盐并调节金属中心的氧化还原电位。通常,氮配体对铜介导的ATRP尤其有效,而磷基配体由于效率较低而很少使用。因此,这项工作旨在首次探索一种简便,简单且廉价的离子液体(IL),1-苯基-3-甲基咪唑二苯基磷酸酯([Phmim] [Ph 2 PO 4 ]),作为CuBr 2 介导的反向ATRP的有效磷配体。成功的关键归因于IL配体与催化剂的更强络合以及所得络合物的更高溶解度。聚合以受控/“活性”方式进行,如一级动力学,分子量随单体转化率的线性变化以及窄的分子量分布所证明。 CuBr 2 / [Phmim] [Ph 2 等溶剂,反应温度,IL和摩尔比等实验参数的影响 PO 4 ]-对聚合反应进行了详细研究。此外, 1 H NMR分析证实了所得聚合物的含卤素链端官能团。

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