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The Influence of Initiator Diol-BF3 Complex Solubility and Other Factors on the Induction Period in BF3 Catalyzed Cationic Ring Opening Polymerization of Epichlorohydrin

机译:引发剂二醇-BF3络合物的溶解度及其他因素对表氯醇在BF3催化的阳离子开环聚合中的诱导期的影响

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In this work, the effect of initiator diol-BF3 complex solubility on an induction period was investigated for BF3 catalyzed cationic ring opening polymerization of epichlorohydrin at various [BF3]/[initiator diol] ([C]/[I]) ratios, using on-line temperature and torque monitoring systems. Other factors influencing the induction period (reaction temperature: -5-30 °C, [C]/[I] ratio, and monomer feed rate: 9.2× 10~(-3)-27.6× 10~(-3) mol·min~(-1)) were also investigated in order to optimize the polymerization condition in the presence of the diethylene glycol (DEG)-BF3 complex. A 5-L, triple-glass jacket reactor was customized for the monitoring system. 1,4-Butanediol (BD) and diethylene glycol (DEG) were used for the initiator diol. In the presence of the BD-BF3 complex, which is insoluble in methylene chloride solvent (MC), an uncontrollable and highly exothermic reaction occurred shortly after the long induction period. Although there was an induction period with the DEG initiator diol, the exothermic reaction which followed was much more controlled, and the resulting polymers showed relatively narrow polydispersities (1.31-1.34) using the DEG initiator diol, which is soluble in MC. The longer induction period, which was highly affected by the solvation effect of the reaction media, appeared at a lower reaction temperature and [C]/[I] ratio. The molecular weights and structural characterizations of PECHs were analyzed via GPC, ~1H-NMR.
机译:在这项工作中,使用不同的[BF3] / [引发剂二醇]([C] / [I])比率,研究了BF3催化环氧氯丙烷阳离子开环聚合反应中引发剂二醇-BF3络合物溶解度对诱导期的影响。在线温度和扭矩监控系统。影响诱导期的其他因素(反应温度:-5-30°C,[C] / [I]比,单体进料速率:9.2×10〜(-3)-27.6×10〜(-3)mol·为了优化在二甘醇(DEG)-BF3配合物存在下的聚合条件,还研究了min((-1))。为监控系统定制了一个5升三层玻璃夹套反应器。 1,4-丁二醇(BD)和二甘醇(DEG)用于引发剂二醇。在不溶于二氯甲烷溶剂(MC)的BD-BF3络合物的存在下,长时间诱导后不久发生了不可控制的高放热反应。尽管DEG引发剂二醇存在诱导期,但是随后的放热反应受到更多的控制,并且使用可溶于MC的DEG引发剂二醇,所得聚合物显示出相对窄的多分散性(1.31-1.34)。在较低的反应温度和[C] / [I]比下,较长的诱导期受到反应介质的溶剂化作用的高度影响。 PECH的分子量和结构表征通过GPC,〜1H-NMR分析。

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