Wilson J A, Hopkins S A, Wright P M, Dove A P
Department of Chemistry, University of Warwick, Gibbet Hill Road, Coventry, CV4 7AL, United Kingdom.
Infineum UK Ltd., Milton Hill, Abingdon, OX13 6BB, United Kingdom.
ACS Macro Lett. 2016 Mar 15;5(3):346-350. doi: 10.1021/acsmacrolett.5b00940. Epub 2016 Feb 18.
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.
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。