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首页> 外文期刊>Journal of Applied Polymer Science >Role of anionic and nonionic surfactants on the control of particle size and latex colloidal stability in the seeded emulsion polymerization of butyl methacrylate
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Role of anionic and nonionic surfactants on the control of particle size and latex colloidal stability in the seeded emulsion polymerization of butyl methacrylate

机译:阴离子和非离子表面活性剂在甲基丙烯酸丁酯种子乳液聚合中控制粒径和乳胶胶体稳定性的作用

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摘要

The evolution of the main colloidal parameters in the seeded starved-feed semi-continuous emulsion polymerization of butyl methacrylate (BMA) was investigated, with the main purpose of assessing the effectiveness of the semi-empirical relationship S = K (.) S-s (.) Delta A/A(s) as a tool to define the surfactant/monomer feed ratio (proportional to K) best suited to achieve a target particle size. In particular, the effect of the type and amount of surfactant [i.e., anionic, sodium dodecyl sulfate (SDS), or nonionic, Brij 58P] added during the semi-continuous stage was considered. Coagulum formation was never observed under the adopted experimental conditions. To detect the occurrence of secondary nucleation or particle aggregation, or both, the particle size and number of particles, the surface tension and the particle surface coverage ratio were correlated. The best results were obtained with SDS and 0.8 <= K <= 3. In fact, under the selected experimental conditions, only with SDS did the number of particles remain nearly constant throughout the polymerization at the value defined by the seed latex; the particle size distribution was highly monodisperse, and the final particle diameter closely matched the calculated one (similar to 120 nm). The above semi-empirical relationship based on the adjustable parameter K was validated by running test polymerizations aimed at lattices with well-defined particle size. (c) 2006 Wiley Periodicals, Inc.
机译:研究了甲基丙烯酸丁酯(BMA)的种子饥饿进料半连续乳液聚合中主要胶体参数的演变,其主要目的是评估半经验关系S = K(。)Ss(。)的有效性。 )ΔA/ A作为定义最适合达到目标粒度的表面活性剂/单体进料比(与K成比例)的工具。特别地,考虑了在半连续阶段中添加的表面活性剂的类型和量的影响[即,阴离子型十二烷基硫酸钠(SDS)或非离子型Brij 58P]。在所采用的实验条件下从未观察到Coagulum的形成。为了检测二次成核或颗粒聚集或两者的发生,将颗粒的大小和数量,表面张力和颗粒表面覆盖率相关。使用SDS和0.8 <= K <= 3可获得最佳结果。实际上,在选定的实验条件下,只有使用SDS才能使整个聚合过程中的颗粒数几乎保持恒定,达到种子胶乳所定义的值。粒径分布高度单分散,最终粒径与计算出的粒径非常接近(近似于120 nm)。通过针对具有明确定义的粒度的晶格进行测试聚合,验证了基于可调参数K的上述半经验关系。 (c)2006年Wiley Periodicals,Inc.

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