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Semi-continuous emulsion polymerization of styrene in the presence of poly(methyl methacrylate) seed particles. Polymerization conditions giving core-shell particles

机译:在聚(甲基丙烯酸甲酯)种子颗粒存在下,苯乙烯的半连续乳液聚合。聚合条件产生核-壳颗粒

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摘要

This work reports the morphology of two-phase latex particles prepared by semi-continuous seed emulsion polymerization of styrene in the presence of polar poly(methyl methacrylate), PMMA, seed particles, using different conditions of non-polar styrene feed rate, rate of initiation, seed particle concentration and temperature of polymerization. The expected latex particle morphology at thermodynamic equilibrium is an inverted core-shell structure where the non-polar polystyrene would form the core. However, depending on the set of process conditions used the morphology of the resulting two-phase particles varied from that of a pure core-shell structure, over intermediate structures in which a shell of PS surrounded a PMMA core containing an increasing number of PS phase domains, to a structure in which the entire PS phase was present as discrete PS phase domain, more or less evenly distributed in a matrix of PMMA. By the use of a caloirimetric reactor system the monomer concentration in the particles during the different polymerization experiments could be calculated by comparing the integral of the polymerization rate curve with the integral of the monomer feed rate. A comparison between particle morphology and the calculated concentration of plasticizing monomer in the polymerizing particles strongly suggested that the diffusivity of the entering oligo radicals determined by the difference between polymerization temperature and the glass transition temperature of the monomer-swollen core polymer is a key factor determining the morphology of two-phase particles prepared by semi-continuous seed emulsion polymerization. Two-phase particles with a true core-shell structure were obtained in experiments where the estimated glass transition temperature of the PMMA phase was only a few degrees below the polymerization temperature. The results show that such particles can be obtained under conditions of high as well as low styrene feed rates, provided that the rate of initiation is properly adjusted. (C) 2007 Elsevier Ltd. All rights reserved.
机译:这项工作报告了在极性聚甲基丙烯酸甲酯,PMMA,种子颗粒存在下,使用不同条件的非极性苯乙烯进料速率,苯甲酸酯的添加速率,半连续种子乳液聚合苯乙烯制备的两相胶乳颗粒的形态。引发,种子颗粒浓度和聚合温度。在热力学平衡下预期的胶乳颗粒形态是倒置的核-壳结构,其中非极性聚苯乙烯将形成核。然而,取决于所使用的工艺条件组,所得到的两相颗粒的形态不同于纯核-壳结构,而是中间结构,在中间结构中,PS的壳包围着包含越来越多的PS相的PMMA核到整个PS相都以离散PS相域形式存在的结构,或多或少均匀地分布在PMMA矩阵中。通过使用量热反应器系统,可以通过比较聚合速率曲线的积分与单体进料速率的积分来计算不同聚合实验期间颗粒中的单体浓度。颗粒形态与聚合颗粒中可塑单体的计算浓度之间的比较强烈表明,由聚合温度和单体溶胀的芯聚合物的玻璃化转变温度之间的差异确定的进入的低聚自由基的扩散率是决定其性能的关键因素。半连续种子乳液聚合制备的两相颗粒的形貌在实验中获得了具有真正核-壳结构的两相颗粒,其中PMMA相的估计玻璃化转变温度仅比聚合温度低几度。结果表明,只要适当调节引发速率,就可以在高和低苯乙烯进料速率的条件下获得此类颗粒。 (C)2007 Elsevier Ltd.保留所有权利。

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