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基于内酯环大小和ε-取代的共聚物序列依赖性。

Dependence of Copolymer Sequencing Based on Lactone Ring Size and ε-Substitution.

作者信息

Wilson J A, Hopkins S A, Wright P M, Dove A P

机构信息

Department of Chemistry, University of Warwick, Gibbet Hill Road, Coventry, CV4 7AL, United Kingdom.

Infineum UK Ltd., Milton Hill, Abingdon, OX13 6BB, United Kingdom.

出版信息

ACS Macro Lett. 2016 Mar 15;5(3):346-350. doi: 10.1021/acsmacrolett.5b00940. Epub 2016 Feb 18.

Abstract

The copolymerization of an ε-substituted ε-lactone, menthide (MI), and a range of nonsubstituted lactones (6-, 7-, 8-, and 9-membered rings) was investigated in order to determine the factors that affect the sequencing of the MI copolymers. Analysis by quantitative C NMR spectroscopy showed the copolymerization of MI with a nonsubstituted lactone of ring size 7 or less produced a randomly sequenced copolymer, as a consequence of the smaller lactone polymerizing first and undergoing rapid transesterification as MI was incorporated. Conversely, copolymerization with larger ring lactones (ring size 8 and above) produced block-like copolymers as a consequence of MI polymerizing initially, which does not undergo rapid transesterification side reactions during the incorporation of the second monomer. Terpolymerizations of a small ring lactone, macrolactone, and menthide demonstrated methods of producing lactone terpolymers with different final sequences, depending on when the small ring lactone was injected into the reaction mixture.

摘要

为了确定影响ε-取代的ε-内酯薄荷醇(MI)共聚物序列的因素,研究了其与一系列未取代的内酯(6元、7元、8元和9元环)的共聚反应。定量碳核磁共振光谱分析表明,MI与环尺寸为7或更小的未取代内酯共聚会产生无规序列共聚物,这是因为较小的内酯先聚合,并且在加入MI时会发生快速的酯交换反应。相反,与较大环内酯(环尺寸为8及以上)共聚会产生嵌段状共聚物,这是因为MI首先聚合,在加入第二单体的过程中不会发生快速的酯交换副反应。小环内酯、大环内酯和薄荷醇的三元共聚反应表明,根据小环内酯注入反应混合物的时间不同,可以制备出具有不同最终序列的内酯三元共聚物。

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