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Design of New Reaction Fields for Spherical Polypyrrole Particle Synthesis

机译:球形聚吡咯粒子合成新反应场的设计

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Polypyrrole conducting polymers have been investigated widely for various applications because of their thermal and environmental stability and good electrical conductivity. Using chemical oxidative polymerization for the synthesis of polypyrrole particles, the reaction rate is very fast. In this study, we designed two new reaction fields for the synthesis of spherical polypyrrole nanoparticles. In the first system, oxidative polymerization of monomer droplets infused in a water/oil (W/O) emulsion reaction field was investigated. The second system employed dispersed monomer in an aqueous solution with a low concentration of oxidant in which polymerization was augmented by ultrasonic irradiation. Effective control of the reaction rate was important for enabling the synthesis of fine spherical polypyrrole particles.
机译:由于其热和环境稳定性和良好的导电性,已经针对各种应用进行了广泛的滤萘辊传导聚合物。使用化学氧化聚合来合成聚吡咯颗粒,反应速率非常快。在这项研究中,我们设计了两种新的反应田,用于合成球形聚吡咯纳米粒子。在第一系统中,研究了在水/油(W / O)乳液反应场中注入的单体液滴的氧化聚合。第二种系统在水溶液中使用分散的单体,其具有低浓度的氧化剂,其中通过超声辐射增强聚合。有效控制对反应速率对于能够合成细球形聚吡咯颗粒是重要的。

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