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首页> 外文期刊>Designed Monomers and Polymers: An International Journal on Monomer and Macromolecular Synthesis >Well-defined gels prepared by radical addition-coupling polymerization
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Well-defined gels prepared by radical addition-coupling polymerization

机译:通过自由基加成-偶联聚合制备的明确凝胶

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摘要

A novel radical addition-coupling polymerization method is applied to prepare gels with controlled chain structure and length between branch points. Structure of the chains was varied between rigid or flexible ones by synthesizing different tribromide and dibromide monomers and reacting them with 2-methyl-2-nitrosopropane (MNP) under catalysis of Cu/N,N,N ',N '',N ''-pentamethyldiethylene-triamine. The carbon radical generated by single electron transfer from the bromides can be efficiently captured by MNP, forming nitroxide radical. The in situ formed nitroxide radical immediately undergoes cross-coupling reaction with another carbon radical, generating gel bridged with alkoxyaime moiety via step-growth mechanism. The tribromide and dibromide monomers were synthesized from different saturated and unsaturated compounds, or by bulk atom transfer radical polymerization of styrene using small bromide as initiator. The rigid gel has better controlled chains between branch points than the flexible ones. Selective dissociation of the ester group in the backbone of chains has been realized, which reserved the weak of NO-C. Flory-Huggins interaction parameter chi of the gels with fixed length between branch points were measured, which solved the difficulty that chi of insoluble polymer cannot be determined by common methods used for soluble polymers.
机译:一种新颖的自由基加成偶联聚合方法被用于制备具有受控链结构和分支点之间长度的凝胶。通过合成不同的三溴化物和二溴化物单体并使它们与2-甲基-2-亚硝基丙烷(MNP)在Cu / N,N,N',N',N',N'的催化下进行反应,可在刚性或柔性链之间改变链的结构。 -五甲基二乙烯-三胺。 MNP可以有效地捕获由溴化物单电子转移产生的碳自由基,从而形成氮氧自由基。原位形成的氮氧化物自由基立即与另一个碳自由基发生交叉偶联反应,从而通过逐步生长机理生成与烷氧基肟部分桥接的凝胶。由不同的饱和和不饱和化合物,或通过使用小溴化物作为引发剂的苯乙烯的本体原子转移自由基聚合,合成三溴化物和二溴化物单体。刚性凝胶比柔性凝胶在分支点之间具有更好的控制链。已经实现了在链的主链中酯基的选择性离解,这保留了NO-C的弱点。测量了支点之间具有固定长度的凝胶的弗洛里-哈金斯相互作用参数chi,解决了不能通过用于可溶性聚合物的常规方法确定不溶性聚合物的chi的困难。

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