首页> 外文期刊>Australian Journal of Chemistry: A Journal for the Publication of Original Research in All Branches of Chemistry >Soft Core-Hard Shell Silicone Hybrid Nanoparticles Synthesized by Miniemulsion Polymerization: Effect of Silicone Content and Crosslinking on Latex Film Properties
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Soft Core-Hard Shell Silicone Hybrid Nanoparticles Synthesized by Miniemulsion Polymerization: Effect of Silicone Content and Crosslinking on Latex Film Properties

机译:细乳液聚合法合成的软核-硬壳有机硅杂化纳米粒子:有机硅含量和交联对乳胶膜性能的影响

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摘要

Composite nanoparticles consisting of 'soft' silicone oil and 'hard' polyacrylate with core-shell morphology were obtained by a one-step synthesis via the miniemulsion process. Various parameters, i.e. the viscosity and amount of the silicone, the surfactant content, the (co)monomers affecting the particle size and morphology were studied. With an optimum hydrophilicity of the polymer shell, composite particles possessing a well-defined core-shell morphology were obtained as determined by transmission electron microscopy. The fully encapsulated silicone oil (40 wt-%) in a slightly crosslinked polyacrylate shell showed good film formation as revealed by atomic force microscopy. The ability to highly confine silicone oil in the composite film could clearly be evaluated from contact angle measurements. By finely changing the crosslink concentration in the polymeric shell, tunable hydrophobic properties of films cast from silicone core-polyacrylate shell latexes could be achieved. In addition, the high thermal resistance and excellent water-resistant properties of the film were shown by thermal gravimetric analysis and water swelling determination. These composite latexes are presented as new alternatives for practical utility in waterborne coatings.
机译:通过细乳液法一步合成,获得了由“软”硅油和“硬”聚丙烯酸酯组成的具有核-壳形貌的复合纳米颗粒。研究了各种参数,即硅氧烷的粘度和量,表面活性剂含量,影响粒度和形态的(共)单体。通过聚合物壳的最佳亲水性,获得了具有明确定义的核-壳形态的复合颗粒,如通过透射电子显微镜所确定的。如原子力显微镜所显示的,在稍微交联的聚丙烯酸酯壳中的完全包封的硅油(40 wt%)显示出良好的成膜性。从接触角测量可以清楚地评估将硅油高度限制在复合膜中的能力。通过精细地改变聚合物壳中的交联浓度,可以实现由硅酮核-聚丙烯酸酯壳胶乳流延的薄膜的可调疏水性能。另外,通过热重分析和水溶胀测定显示出膜的高耐热性和优异的耐水性。这些复合胶乳是在水性涂料中实用的新型替代品。

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