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Alkoxyoxirane, a Unique Cyclic Monomer: Controlled Cationic Homopolymerization Mediated by Long-Lived Species and Copolymerization with Vinyl Ether via Alkoxy Group Transfer

机译:烷氧基环氧乙烷,一种独特的环状单体:由长寿命物种介导的受控阳离子均聚,以及通过烷氧基转移与乙烯基醚共聚

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摘要

1-Methoxy-2-methylpropylene oxide (MOMPO), an alkoxyoxirane that can generate a carbocation adjacent to an alkoxy group via ring-opening, was demonstrated to polymerize in a controlled manner with the use of a metal chloride as a Lewis acid catalyst. The choice of the initiating system is critical for the successful controlled homopolymerization of this alkoxyoxirane; a GaCl3/THF system was observed to be the best combination for the initiating system. Furthermore, the copolymerization of MOMPO with isopropyl vinyl ether (IPVE) generated long-lived species when CF3SO3HBu(4)NI was used as the initiating system. Surprisingly, the reaction proceeded via the transfer of the alkoxy group in the IPVE unit. More specifically, the isopropoxy group at the penultimate IPVE unit transferred to the MOMPO-derived propagating cation after the crossover reaction from the IPVE-derived carbocation to MOMPO. This type of reaction creates a side group that possesses the ring-opened MOMPO structure with the isopropoxy group. The generation of copolymers via the alkoxy-group transfer mechanism is unique to the copolymerization in this study and was confirmed by H-1, C-13, and 2D NMR analyses and by the acid hydrolysis and subsequent reacetalization reactions of the products.
机译:使用金属氯化物作为路易斯酸催化剂,1-甲氧基-2-甲基环氧丙烷(MOMPO)是一种可通过开环生成邻近烷氧基的碳正离子的烷氧基环氧乙烷,经证实可聚合。引发体系的选择对于成功控制这种烷氧基环氧乙烷的均聚至关重要。观察到GaCl3 / THF系统是引发系统的最佳组合。此外,当使用CF3SO3H / nBu(4)NI作为引发体系时,MOMPO与异丙基乙烯基醚(IPVE)的共聚反应产生了长寿命物种。令人惊讶地,反应通过IPVE单元中烷氧基的转移而进行。更具体地,在从IPVE衍生的碳阳离子到MOMPO的交叉反应之后,倒数第二个IPVE单元的异丙氧基基团转移到衍生自MOMPO的传播阳离子。这种类型的反应产生具有带有异丙氧基的开环MOMPO结构的侧基。在本研究中,通过烷氧基转移机理生成共聚物是共聚反应所独有的,并通过H-1,C-13和2D NMR分析以及酸水解和随后的产物再缩醛化反应得到了证实。

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