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Effect of Monomer Dosing Rate in the Preparation of Mesoporous Polystyrene Nanoparticles by Semicontinuous Heterophase Polymerization

机译:单体加料速率对半连续液相聚合制备介孔聚苯乙烯纳米粒子的影响

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摘要

The semicontinuous heterophase polymerization of styrene in the presence of cross-linking and porogen agents was carried out. Latexes with close to 20% solid content, which contained mesoporous nanoparticles with 28 nm in average diameters, up to 0.5 cm3/g in porosity and 6–8 nm in pore diameters were obtained. By varying the monomer dosing rate over the micellar solution, an unexpected direct dependence of instantaneous conversion on the monomer dosing rate was found. This was ascribed to the higher average number of radicals per particle attained in the polymerization at the higher dosing rate, which in turn would arise from the higher gel percentage in the polymer. It is believed that the cross-linked chains prevent encounters between radicals, delaying the bimolecular termination reactions and allowing the existence of more than one radical inside the particles, which in turn increases the propagation rate.
机译:在交联剂和成孔剂存在下,苯乙烯进行半连续的异相聚合。获得了固含量接近20%的胶乳,其中包含平均孔径为28 nm,孔隙率最高为0.5 cm 3 / g,孔径为6-8 nm的中孔纳米粒子。通过改变胶束溶液上的单体加料速率,发现瞬时转化对单体加料速率的出乎意料的直接依赖性。这归因于在较高的加料速率下在聚合中获得的每个颗粒的较高的平均自由基数,这反过来又归因于聚合物中较高的凝胶百分比。据信,交联的链防止了自由基之间的相遇,延迟了双分子终止反应,并允许在粒子内部存在一个以上的自由基,这反过来又增加了传播速率。

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