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Synthesis and Characterization of Film-Forming Colloidal Nanocomposite Particles Prepared via Surfactant-Free Aqueous Emulsion Copolymerization

机译:无表面活性剂水乳液共聚合制备成膜胶体纳米复合粒子的合成与表征

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摘要

The efficient synthesis of film-forming colloidal nanocomposite particles is described. A 50:50 mass ratio of styrene and n-butyl acrylate is statistically copolymerized using a cationic azo initiator at 60 degrees C under aqueous emulsion polymerization conditions in the presence of a commercially available glycerol-functionalized ultrafine silica sol. This new formulation leads to the production of copolymer/silica particles with relatively narrow size distributions and a well-defined "core-shell" morphology. These nanocomposite particles contain up to 43% silica by mass, and the silica aggregation efficiency can exceed 95%, so very few nonaggregated silica nanoparticles remain in solution after the in situ copolymerization is conducted. Upon drying these dispersions, highly transparent free-standing nanocomposite films are obtained. Control experiments confirm the importance of using the cationic azo initiator in combination with the glycerol-functionalized silica sol. Moreover, it is also shown that simple admixtures of a film-forming copolymer latex with the glycerol-functionalized silica sol give much more opaque nanocomposite films, while the deliberate addition of excess silica sol prior to nanocomposite film formation leads to extensive film cracking. Thus this in situ copolymerization route appears to offer a decisive advantage for nanocomposite coatings applications.
机译:描述了成膜的胶体纳米复合颗粒的有效合成。在可商购的甘油官能化的超细二氧化硅溶胶存在下,在水性乳液聚合条件下,在60℃下使用阳离子偶氮引发剂,将苯乙烯和丙烯酸正丁酯的质量比为50:50统计共聚。这种新配方导致生产出具有相对窄的粒度分布和明确定义的“核-壳”形态的共聚物/二氧化硅颗粒。这些纳米复合颗粒包含按质量计高达43%的二氧化硅,并且二氧化硅的聚集效率可以超过95%,因此在进行原位共聚之后,极少的未聚集的二氧化硅纳米颗粒保留在溶液中。干燥这些分散体后,获得了高度透明的自立式纳米复合膜。对照实验证实了将阳离子偶氮引发剂与甘油官能化的二氧化硅溶胶结合使用的重要性。此外,还显示成膜共聚物胶乳与甘油官能化的二氧化硅溶胶的简单混合物产生了更多不透明的纳米复合材料薄膜,而在纳米复合材料薄膜形成之前故意添加过量的二氧化硅溶胶会导致大量的薄膜破裂。因此,这种原位共聚路线似乎为纳米复合涂料的应用提供了决定性的优势。

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