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Synthesis and properties of branched organosilicon-acrylate copolymer latexes

机译:支链有机硅-丙烯酸酯共聚物胶乳的合成与性能

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Stable organosilicon-acrylate copolymer latexes with high silicon content were prepared by seeded semibatch emulsion polymerization of butyl acrylate(BA),methyl methacrylate(MMA)with a novel branched organosilicon monomer 3-methacryloxypropyl tris(trimefhylsiloxy)silane(MPTS).Monomer conversion,evolution of the particle size and its distribution were monitored by dynamic light scattering.The effects of MPTS on the polymerization kinetics,the nucleation mechanism and properties of latex were investigated.The results indicated that,in addition to micellar nucleation,a coagulative nucleation step was also observed as a result of the addition of the organosilicon monomer,accordingly,the particle number of the silicon-acrylate latexes increased,the average particle diameter decreased and the polymerization rate accordingly increased compared to those of the acrylate latexes without organosilicon monomer.Moreover,the particle size distribution presented bimodal curves,which indicated that there were large particles formed at an early stage.However,the particle size distribution curves became monomodal at the later stage,and the final latex shows a narrow particle size distribution.It was found that the properties of latex and latex film were obviously influenced by MPTS content.With increasing MPTS content,latex film glass transition temperature and water absorption ratio decreased,the degradation temperature and water contact angle were increased.Hence,the resulting latex films containing MPTS showed lower glass transition temperature and excellent water-resistance,which probably due to the incorporation of the bulky branched hydrophobic group of MPTS into the copolymer chains.
机译:通过丙烯酸丁酯(BA),甲基丙烯酸甲酯(MMA)与新型支链有机硅单体3-甲基丙烯酰氧基丙基三(三甲硅烷基甲硅烷氧基)硅烷(MPTS)的种子分批乳液聚合制备了高硅含量的稳定有机硅丙烯酸酯共聚物胶乳。通过动态光散射监测了粒径的变化及其分布。研究了MPTS对胶乳聚合动力学,成核机理和胶乳性能的影响。结果表明,除胶束成核外,还有凝固成核步骤。另外,由于添加了有机硅单体,与没有有机硅单体的丙烯酸酯乳胶相比,丙烯酸硅乳胶的颗粒数增加,平均粒径减小,聚合速率相应提高。粒度分布呈双峰曲线,表明早期形成大颗粒,但后期粒径分布曲线变为单峰,最终的乳胶粒径分布较窄,发现乳胶和乳胶膜的性能受到显着影响。 MPTS含量。随着MPTS含量的增加,乳胶薄膜的玻璃化转变温度和吸水率降低,降解温度和水接触角增加。因此,所得含MPTS的乳胶薄膜显示出较低的玻璃化转变温度和优异的耐水性,这可能由于将MPTS的庞大支链疏水基团引入共聚物链中。

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