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Effect of Mesoporosity on Thermal and Mechanical Properties of Polystyrene/Silica Composites

机译:介孔率对聚苯乙烯/二氧化硅复合材料热力学性能的影响

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摘要

In this study, mesoporous or colloidal silica particles were incorporated into polystyrene matrices via melt blending or by styrene polymerization initiated from the particle surface. The relationships between the surface morphology of filler particles in polymer composites and their thermomechanical properties were investigated. High molecular weight polystyrene-silica hybrids were generated by modifying the surfaces of monodisperse colloidal silica and templated mesoporous silica nanoparticles. The functionalized silica surfaces were grafted with alkyl halide initiators for atom transfer radical polymerization Polymerization was conducted without free initiator present. The physical properties of these composites were studied by dynamic mechanical analysis, thermogravimetric analysis, transmission electron microscopy, and scanning electron microscopy. Results indicate that colloidal and mesoporous silica polymer composites generated by atom transfer radical polymerization have similar graFted polymer characteristics, indicating that polymer growth from the surface of the particle does not allow for significant polymer chain growth in the interior of the mesoporous silica particles.
机译:在这项研究中,通过熔融共混或从颗粒表面引发的苯乙烯聚合,将中孔或胶体二氧化硅颗粒掺入到聚苯乙烯基质中。研究了聚合物复合材料中填料颗粒的表面形态与其热机械性能之间的关系。通过修饰单分散胶态二氧化硅和模板化的介孔二氧化硅纳米粒子的表面,可以生成高分子量的聚苯乙烯-二氧化硅杂化物。用烷基卤化物引发剂接枝官能化的二氧化硅表面以进行原子转移自由基聚合。在不存在游离引发剂的情况下进行聚合。通过动态力学分析,热重分析,透射电子显微镜和扫描电子显微镜研究了这些复合材料的物理性能。结果表明,通过原子转移自由基聚合生成的胶体和中孔二氧化硅聚合物复合材料具有相似的梯度聚合物特性,表明从颗粒表面生长的聚合物不允许中孔二氧化硅颗粒内部的聚合物链显着增长。

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