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Variation of Ultimate Properties in Extruded iPP-Mesoporous Silica Nanocomposites by Effect of iPP Confinement within the Mesostructures

机译:iPP限制介孔结构内的iPP介孔二氧化硅纳米复合材料的极限性能的变化

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摘要

Nanocomposites based on isotactic polypropylene (iPP) and mesoporous silica particles of either MCM-41 or SBA-15 were prepared by melt extrusion. The effect of the silica incorporated into an iPP matrix was firstly detected in the degradation behavior and in the rheological response of the resultant composites. Both were ascribed, in principle, to variations in the inclusion of iPP chains within these two mesostructures, with well different pore size. DSC experiments did not provide information on the existence of confinement in the iPP-MCM-41 materials, whereas a small endotherm, located at about 100 °C and attributed to the melting of confined crystallites, is clearly observed in the iPP-SBA-15 composites. Real-time variable-temperature Small Angle X-ray Scattering (SAXS) experiments with synchrotron radiation turned out to be crucial to finding the presence of iPP within MCM-41 pores. From these measurements, precise information was also deduced on the influence of the MCM-41 on iPP long spacing since overlapping does not occur between most probable iPP long spacing peak with the characteristic diffractions from the MCM-41 hexagonal nanostructure in comparison with existing superposition in SBA-15-based materials.
机译:通过熔融挤出制备基于等规聚丙烯(iPP)和MCM-41或SBA-15的中孔二氧化硅颗粒的纳米复合材料。首先在生成的复合材料的降解行为和流变响应中检测了掺入iPP基质中的二氧化硅的作用。原则上,这两者都归因于iPP链在这两个介孔结构内的包含变化,且孔径大小相差很大。 DSC实验未提供有关iPP-MCM-41材料中是否存在限制的信息,而在iPP-SBA-15中清楚地观察到位于约100°C并归因于受限微晶熔化的小吸热。复合材料。事实证明,使用同步辐射的实时可变温度小角X射线散射(SAXS)实验对于在MCM-41孔中发现iPP的存在至关重要。从这些测量中,还可以得出关于MCM-41对iPP长间距的影响的精确信息,因为与可能存在的叠置相比,最可能的iPP长间距峰与MCM-41六角形纳米结构的特征衍射之间不会发生重叠。基于SBA-15的材料。

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