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Initiator Systems Effect on Particle Coagulation and Particle Size Distribution in One-Step Emulsion Polymerization of Styrene

机译:苯乙烯体系一步乳液聚合中引发剂体系对颗粒凝结和粒径分布的影响

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Particle coagulation is a facile approach to produce large-scale polymer latex particles. This approach has been widely used in academic and industrial research owing to its higher polymerization rate and one-step polymerization process. Our work was motivated to control the extent (or time) of particle coagulation. Depending on reaction parameters, particle coagulation is also able to produce narrowly dispersed latex particles. In this study, a series of experiments were performed to investigate the role of the initiator system in determining particle coagulation and particle size distribution. Under the optimal initiation conditions, such as cationic initiator systems or higher reaction temperature, the time of particle coagulation would be advanced to particle nucleation period, leading to the narrowly dispersed polymer latex particles. By using a combination of the Smoluchowski equation and the electrostatic stability theory, the relationship between the particle size distribution and particle coagulation was established: the earlier the particle coagulation, the narrower the particle size distribution, while the larger the extent of particle coagulation, the larger the average particle size. Combined with the results of previous studies, a systematic method controlling the particle size distribution in the presence of particle coagulation was developed.
机译:颗粒凝结是生产大规模聚合物胶乳颗粒的简便方法。由于其较高的聚合速率和一步聚合工艺,该方法已在学术和工业研究中广泛使用。我们的工作是为了控制颗粒的凝结程度(或时间)。根据反应参数,颗粒凝结也能够产生窄分散的胶乳颗粒。在这项研究中,进行了一系列实验以研究引发剂系统在确定颗粒凝结和粒径分布中的作用。在最佳引发条件下,例如阳离子引发剂体系或更高的反应温度,颗粒凝结的时间将提前至颗粒成核期,从而导致聚合物胶乳颗粒分布较窄。通过结合Smoluchowski方程和静电稳定性理论,建立了粒度分布与颗粒凝结之间的关系:颗粒凝结越早,粒度分布越窄,而颗粒凝结程度越大,则平均粒径更大。结合以前的研究结果,开发了一种系统的控制方法,该方法可在存在颗粒凝结的情况下控制粒径分布。

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