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Nitroxide-Mediated Polymerization of Bio-Based Farnesene with a Functionalized Methacrylate

机译:一氧化氮介导的生物基法呢烯与官能化甲基丙烯酸酯的聚合

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Farnesene (Far) is a bio-based terpene monomer that is similar in structure to commercially used dienes like butadiene and isoprene. Nitroxide-mediated polymerization (NMP) is adept for the polymerization of dienes, but not particularly effective at controlling the polymerization of methacrylates using commercial nitroxides. In this study, Far is statistically copolymerized with a functional methacrylate, glycidyl methacrylate (GMA), by NMP using N-succinimidyl modified commercial BlocBuilder (NHS-BB) initiator. Reactivity ratios are determined to be r(Far) = 0.54 +/- 0.04 and r(GMA) = 0.24 +/- 0.02. The ability of the poly(Far-stat-GMA) chains to reinitiate for chain extension with styrene showed a clear shift in molecular weight and monomodal distribution. Copolymerizations using a new alkoxyamine, Dispolreg 007 (D7), is explored as it is shown to homopolymerize methacrylates, but not yet reported for statistical copolymerizations. Bimodal molecular weight distributions are observed when an equimolar ratio of Far and GMA is copolymerized with D7 due to slow decomposition of the initiator, but chain ends are active as shown by successful chain extension with styrene. Both NHS-BB and D7 initiators are used to synthesize poly[Far-b-(GMA-stat-Far)] and poly(Far-b-GMA) diblock copolymers. While the NHS-BB initiated polymer chains have lower dispersity, D7 exhibits more linear polymerization kinetics and maintains more active chain ends.
机译:法呢烯(Far)是一种生物基萜烯单体,其结构与丁二烯和异戊二烯等市售二烯类似。氮氧化物介导的聚合反应(NMP)擅长于二烯的聚合反应,但对于使用工业氮氧化物控制甲基丙烯酸酯的聚合反应不是特别有效。在这项研究中,使用N-琥珀酰亚胺基改性的商用BlocBuilder(NHS-BB)引发剂,通过NMP,将Far与功能上的甲基丙烯酸酯,甲基丙烯酸缩水甘油酯(GMA)进行统计共聚。确定反应性比为r(Far)= 0.54 +/- 0.04和r(GMA)= 0.24 +/- 0.02。聚(Far-stat-GMA)链重新引发苯乙烯扩链的能力显示出分子量和单峰分布的明显变化。由于使用新的烷氧基胺Dispolreg 007(D7)可以使甲基丙烯酸酯均聚,但仍未进行统计共聚的报道,因此已进行了探索。当由于引发剂的缓慢分解,当等摩尔比的Far和GMA与D7共聚时,观察到双峰分子量分布,但链端具有活性,如成功的苯乙烯扩链所示。 NHS-BB和D7引发剂均用于合成聚[Far-b-(GMA-stat-Far)]和聚(Far-b-GMA)二嵌段共聚物。尽管NHS-BB引发的聚合物链具有较低的分散性,但D7表现出更高的线性聚合动力学并保持了更多的活性链端。

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