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首页> 外文期刊>Colloid and polymer science >Preparation of poly(acrylamide)anoclay organic-inorganic hybrid nanoparticles with average size of ~250 nm via inverse Pickering emulsion polymerization
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Preparation of poly(acrylamide)anoclay organic-inorganic hybrid nanoparticles with average size of ~250 nm via inverse Pickering emulsion polymerization

机译:逆Pickering乳液聚合制备平均粒径约250 nm的聚丙烯酰胺/纳米粘土有机-无机杂化纳米粒子

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In this study, the preparation of poly(acrylamide)/ nanoclay organic-inorganic hybrid nanoparticles via surfactant-free inverse emulsion polymerization by using organically modified clay platelets as stabilizers was discussed. Colloidally stable inverse Pickering emulsions of aqueous acrylamide solution in cyclohexane (solvent) stabilized by hydrophobic Cloisite 20A (MMT20) were prepared. Polymerization was carried out via 2,2'-azobis(isobutyronitrile) and composite particles with an average size of ~250 nm were obtained. The effect of initiator and solvent type on the stability, size, size distribution, and morphology of the produced composite particles was examined. It was observed that in the presence of xylene as solvent, particles with bigger sizes and broader size distribution were obtained. Furthermore, using an ionic initiator resulted in a slight coagulation during polymerization and smaller particles. Moreover, the effect of various polymerization conditions such as temperature, initiator, and crosslinking agent concentration and clay content on the polymerization rate was evaluated. The experimental results showed that polymerization rate increases with an increase in polymerization temperature, crosslinking agent concentration, and initiator content. However, increasing in clay content results in a lower polymerization rate.
机译:在这项研究中,讨论了使用有机改性的粘土血小板作为稳定剂通过无表面活性剂反相乳液聚合制备聚丙烯酰胺/纳米粘土有机-无机杂化纳米粒子。制备了由疏水性Cloisite 20A(MMT20)稳定的丙烯酰胺水溶液在环己烷中的胶体稳定反相Pickering乳液(溶剂)。通过2,2'-偶氮二(异丁腈)进行聚合,得到平均粒径约为250 nm的复合颗粒。检查了引发剂和溶剂类型对所产生的复合颗粒的稳定性,尺寸,尺寸分布和形态的影响。观察到在二甲苯作为溶剂的存在下,获得了具有更大尺寸和更宽尺寸分布的颗粒。此外,使用离子引发剂在聚合过程中导致轻微的凝结和较小的颗粒。此外,评估了各种聚合条件如温度,引发剂,交联剂浓度和粘土含量对聚合速率的影响。实验结果表明,随着聚合温度,交联剂浓度和引发剂含量的增加,聚合速率增加。然而,增加粘土含量导致较低的聚合速率。

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