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首页> 外文期刊>Journal of Applied Polymer Science >Polystyrene latex synthesized in presence of ultrasonic initiation
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Polystyrene latex synthesized in presence of ultrasonic initiation

机译:超声引发下合成的聚苯乙烯胶乳

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摘要

The low water solubility of styrene (St) monomer increase the need for a good initiator system to speed up the emulsion polymerization and remove unreacted monomers. Polymerization of styrene monomer in water was performed at 30, 50, and 70°C under ultrasonic irradiation using sodium dodecyl sulfate as surfactant and ammonium persulfate as initiator. Ultrasonic energy was used as a tool to speed up the polymerization. Combining ultrasonic and ammonium persulfate led to a higher conversion and higher rate of polymerization. Ultrasonic energy has an effect on the particle size distribution. The particle size distribution increases with an increase in the monomer conversion of styrene for ultrasonic polymerization, whereas the particle size distribution did not change with an increase in the monomer conversion compared with the conventional thermal polymerization results. Higher molecular weights were obtained under ultrasonic irradiation. FE-SEM and TEM pictures show different morphology with changing temperature polymerization.
机译:苯乙烯(St)单体的低水溶性增加了对良好引发剂体系的需求,以加快乳液聚合并去除未反应的单体。使用十二烷基硫酸钠作为表面活性剂和过硫酸铵作为引发剂,在30、50和70℃的超声辐射下,苯乙烯单体在水中的聚合。超声波能量被用作加速聚合的工具。超声和过硫酸铵的结合导致更高的转化率和更高的聚合速率。超声波能量会影响粒径分布。与常规热聚合结果相比,粒径分布随着苯乙烯的单体转化率的增加而增加,而粒径分布没有随着单体转化率的增加而改变。在超声辐射下获得更高的分子量。 FE-SEM和TEM图片显示随着温度变化聚合反应的形态不同。

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