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首页> 外文期刊>Macromolecules >Microstructure of the copolymer chain generated by anionic ring-opening polymerization of a model cyclotrisiloxane with mixed siloxane units
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Microstructure of the copolymer chain generated by anionic ring-opening polymerization of a model cyclotrisiloxane with mixed siloxane units

机译:由具有混合硅氧烷单元的模型环三硅氧烷的阴离子开环聚合反应生成的共聚物链的微观结构

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Sequencing of siloxane units was studied in the copolymer chain formed by anionic polymerization of 2,2,4,4-tetramethyl-6,6-diphenylcyclotrisiloxane. The study involved three polymerization systems: lithium silanolate in THF, potassium silanolate complexed with 18-crown-6 in toluene, and tetramethylammonium silanolate in toluene. The sequencing proved to be a very good diagnostic tool for the studies of polymerization chemoselectivity. In all the three mentioned systems the chemoselectivity was high. In particular, processes leading to chain cleavage, such as backbiting and chain fragment interchange, occurred at a much lower rate than propagation, which allowed for quantitative studies of regioselectivity in polymerization. The pentad analysis, performed using the first-order Markov statistics, completed by the determination of the unit sequence at chain extremities, permitted the determination of the contributions from the monomer ring openings at three nonequivalent sites. The regioselectivity is poor as the ring is opened in each of these three places with a significant probability. The results provide important information on the mechanism of the chain propagation. They point to the role of the counterion assistance to the monomer ring opening. The generation of a more stable silanolate propagation center may also be important for choosing the site of the ring-opening. Ab initio calculations suggest the direct interaction of the phenyl group with the metal cation. [References: 38]
机译:在2,2,4,4-四甲基-6,6-二苯基环三硅氧烷的阴离子聚合形成的共聚物链中研究了硅氧烷单元的序列。该研究涉及三个聚合体系:硅烷醇锂在THF中的硅烷醇钾与18-crown-6甲苯络合的硅醇钾,以及硅烷醇盐四甲基铵的甲苯。事实证明,测序是研究聚合化学选择性的很好的诊断工具。在所有提到的三个系统中,化学选择性都很高。特别地,导致链断裂的过程,例如回位和链片段交换,发生的速率远低于传播的速率,这允许定量研究聚合中的区域选择性。使用一阶马尔可夫统计进行的五单元分析,通过确定链末端的单元序列完成,从而可以确定来自三个非等价位点的单体开环的贡献。当在这三个位置中的每一个位置打开环的可能性很大时,区域选择性很差。结果提供了有关链传播机理的重要信息。他们指出了抗衡离子助剂对单体开环的作用。对于选择开环的位置,更稳定的硅烷醇盐传播中心的产生可能也很重要。从头算计算表明苯基与金属阳离子的直接相互作用。 [参考:38]

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