Lee Bongjae F, Wolffs Martin, Delaney Kris T, Sprafke Johannes K, Leibfarth Frank A, Hawker Craig J, Lynd Nathaniel A
Materials Research Laboratory, University of California, Santa Barbara ; Materials Department, University of California, Santa Barbara ; Chemical Research Institute, Samsung Cheil Industries Inc., Republic of Korea.
Macromolecules. 2012 May 8;45(9):3722-3731. doi: 10.1021/ma300634d. Epub 2012 Apr 17.
Reactivity ratios were evaluated for anionic ring-opening copolymerizations of ethylene oxide (EO) with either allyl glycidyl ether (AGE) or ethylene glycol vinyl glycidyl ether (EGVGE) using a benzyl alkoxide initiator. The chemical shift for the benzylic protons of the initiator, as measured by (1)H NMR spectroscopy, were observed to be sensitive to the sequence of the first two monomers added to the initiator during polymer growth. Using a simple kinetic model for initiation and the first propagation step, reactivity ratios for the copolymerization of AGE and EGVGE with EO could be determined by analysis of the (1)H NMR spectroscopy for the resulting copolymer. For the copolymerization between EO and AGE, the reactivity ratios were determined to be r(AGE) = 1.31 ± 0.26 and r(EO) = 0.54 ± 0.03, while for EO and EGVGE, the reactivity ratios were r(EGVGE) = 3.50 ± 0.90 and r(EO) = 0.32 ± 0.10. These ratios were consistent with the compositional drift observed in the copolymerization between EO and EGVGE, with EGVGE being consumed early in the copolymerization. These experimental results, combined with density functional calculations, allowed a mechanism for oxyanionic ring-opening polymerization that begins with coordination of the Lewis-basic epoxide to the cation to be proposed. The calculated transition-state energies agree qualitatively with the observed relative rates for polymerization.
使用苄醇盐引发剂,对环氧乙烷(EO)与烯丙基缩水甘油醚(AGE)或乙二醇乙烯基缩水甘油醚(EGVGE)的阴离子开环共聚反应的竞聚率进行了评估。通过(1)H核磁共振光谱法测量,引发剂苄基质子的化学位移对聚合物生长过程中添加到引发剂的前两种单体的序列敏感。利用引发和第一步链增长的简单动力学模型,通过对所得共聚物的(1)H核磁共振光谱分析,可以确定AGE和EGVGE与EO共聚的竞聚率。对于EO和AGE的共聚反应,确定竞聚率为r(AGE)=1.31±0.26和r(EO)=0.54±0.03,而对于EO和EGVGE,竞聚率为r(EGVGE)=3.50±0.90和r(EO)=0.32±0.10。这些比率与EO和EGVGE共聚过程中观察到的组成漂移一致,EGVGE在共聚反应早期被消耗。这些实验结果与密度泛函计算相结合,提出了一种氧阴离子开环聚合的机理,该机理始于路易斯碱性环氧化物与阳离子的配位。计算得到的过渡态能量与观察到的聚合相对速率在定性上是一致的。