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Controlled Radical Homopolymerization of Representative Cationically Polymerizable Vinyl Ethers

机译:代表性阳离子可聚合乙烯基醚的受控自由基均聚

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Facile direct radical homopolymerization of vinyl ethers without a hydroxy group was achieved up to near full conversion. This polymerization was conducted in water suspension in the presence of lithium hydroxide using a thermally triggered azo-initiator of dimethyl 2,2'-azobis(2-methylpropionate). In the polymerization system, appropriate hydrogen bonding and cation-pi interactions under basic conditions are keys to the successful direct radical homopolymerization. The hydrogen bonding between water and vinyl ether oxygen reduces the reactivity of the growing radical, thus suppressing unfavorable side reactions such as beta-scission. In addition, Li+ interacts with the oxygen and the vinyl group of vinyl ethers. The vinyl ether tends to be "activated" and the polymerization can be facilitated. Based on the results of free radical polymerization of vinyl ethers, controlled polymerization was also accomplished using the appropriate dithiocarbamate RAFT agent in view of the solubilities of the radical leaving group.
机译:没有羟基的乙烯基醚容易地直接自由基均聚,直至接近完全转化。该聚合反应是在氢氧化锂存在下,使用热引发的偶氮2,2'-偶氮二(2-甲基丙酸酯)偶氮引发剂在水悬浮液中进行的。在聚合体系中,在碱性条件下适当的氢键键合和阳离子-π相互作用是成功进行直接自由基均聚的关键。水与乙烯基醚氧之间的氢键降低了正在生长的自由基的反应性,从而抑制了不利的副反应,例如β-断裂。另外,Li +与氧和乙烯基醚的乙烯基相互作用。乙烯基醚倾向于被“活化”并且可以促进聚合。基于乙烯基醚的自由基聚合的结果,考虑到自由基离去基团的溶解性,还使用适当的二硫代氨基甲酸酯RAFT剂完成了受控聚合。

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