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Controlled Cyclopolymerization of Difunctional Vinyl Monomers in Coordination Nanochannels

机译:配位纳米通道中双官能乙烯基单体的受控环聚合

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Radical cyclopolymerization of difunctional monomers based on 1,6-diene components was performed in one-dimensional channels of porous coordination polymers (PCPs). Although bulk or solution polymerization of the monomers usually gives cross-linked insoluble polymers, the unfavorable interpolymer reactions were effectively suppressed in the narrow nanochannels of PCPs to provide soluble linear polymers. The pore matrices and functionality of PCPs can be readily designed by changing the organic ligands, so that polymerization of the diene monomers in different sized pores was examined. The primary structures of the resulting polymers, such as branching, cyclic structure, and stereoregularity, were changed, depending on the pore characteristics of the PCPs.
机译:在多孔配位聚合物(PCP)的一维通道中,进行了基于1,6-二烯组分的双官能单体的自由基环聚合。尽管单体的本体或溶液聚合通常会产生交联的不溶性聚合物,但在PCP的狭窄纳米通道中可有效抑制不利的互聚物反应,从而提供了可溶的线性聚合物。通过改变有机配体可以很容易地设计PCP的孔基质和功能,从而可以检查不同尺寸孔中二烯单体的聚合。取决于PCP的孔特征,生成的聚合物的主要结构(如支链,环状结构和立构规整度)发生了变化。

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