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首页> 外文期刊>Polymers >Electronically Stabilized Copoly(Styrene-Acrylic Acid) Submicrocapsules Prepared by Miniemulsion Copolymerization
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Electronically Stabilized Copoly(Styrene-Acrylic Acid) Submicrocapsules Prepared by Miniemulsion Copolymerization

机译:细乳液共聚制备的电子稳定共聚(苯乙烯-丙烯酸)亚微囊

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摘要

This work reports the preparation and characterization of poly(styrene-acrylic acid) (St/AA) submicrocapsules by using the miniemulsion copolymerization method. AA was introduced to miniemulsion polymerization of St to increase the zeta potential and the resulting electrostatic stability of St/AA submicrocapsules. Phytoncide oil was adopted as the core model material. Miniemulsion copolymerization of St and AA was conducted at a fixed monomer concentration (0.172 mol) with a varying monomer feed ratio [AA]/[St] (0.2, 0.25, 0.33, 0.5, and 1.0). Concentrations of initiator (azobisisobutyronitrile; 1.0 × 10 ?3 , 2.0 × 10 ?3 , 3.0 × 10 ?3 , and 4.0 × 10 ?3 mol/mol of monomer) and surfactant (sodium dodecyl sulfate; 0.6 × 10 ?3 , 1.0 × 10 ?3 , and 1.4 × 10 ?3 mol) were also controlled to optimize the miniemulsion copolymerization of St and AA. Dynamic light scattering and microscopic analyses confirmed the optimum condition of miniemulsion copolymerization of St and AA. Long-term colloidal stability of aqueous St/AA submicrocapsule suspension was evaluated by using Turbiscan TM Lab. In this work, the optimum condition for miniemulsion copolymerization of St and AA was determined ([AA]/[St] = 0.33; [SDS] = 1.0 × 10 ?3 mol; [AIBN] = 2.0 × 10 ?3 mol/mol of monomer). St/AA submicrocapsules prepared at the optimum condition (392.6 nm and ?55.2 mV of mean particle size and zeta potential, respectively) showed almost no variations in backscattering intensity (stable colloids without aggregation).
机译:这项工作报告了通过使用细乳液共聚法制备和表征聚(苯乙烯-丙烯酸)(St / AA)亚微囊。将AA引入到St的细乳液聚合中,以增加Zeta电位和St / AA亚微囊的静电稳定性。杀菌剂油被用作核心模型材料。在固定的单体浓度(0.172摩尔)下,以变化的单体进料比[AA] / [St](0.2、0.25、0.33、0.5和1.0)进行St和AA的细乳液共聚。引发剂(偶氮二异丁腈; 1.0×10 -3、2.0×10 -3、3.0×10 -3和4.0×10 -3 mol / mol单体)和表面活性剂(十二烷基硫酸钠; 0.6×10 -3,1.0)的浓度还控制了×10 3和1.4×10 3摩尔)以优化St和AA的细乳液共聚。动态光散射和显微分析证实了St和AA的细乳液共聚的最佳条件。通过使用Turbiscan TM Lab评估St / AA亚微囊水悬浮液的长期胶体稳定性。在这项工作中,确定了St和AA的细乳液共聚的最佳条件([AA] / [St] = 0.33; [SDS] = 1.0×10?3 mol; [AIBN] = 2.0×10?3 mol / mol单体)。在最佳条件下制备的St / AA亚微囊(平均粒径分别为392.6 nm和Zeta电位约为55.2 mV)在反向散射强度上几乎没有变化(稳定的胶体没有聚集)。

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