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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Effect of iPP molecular weight on its confinement within mesoporous SBA-15 silica in extruded iPP-SBA-15 nanocomposites
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Effect of iPP molecular weight on its confinement within mesoporous SBA-15 silica in extruded iPP-SBA-15 nanocomposites

机译:IPP分子量对挤出的IPP-SBA-15纳米复合材料中介孔SBA-15二氧化硅中诱孔的影响

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摘要

Different nanocomposites based on two isotactic polypropylenes (iPP) and mesoporous SBA-15 silica have been attained by melt extrusion as an attempt to understand the influence of average molecular weight in the rheological behavior, morphological and crystalline features and in the final properties (thermal stability and mechanical response) as well as in the capability of incorporating iPP chains within the nanometric SBA-15 pores. Closeness to rheological percolation and a significant increase of viscosity are observed as SBA-15 content is raised, this effect being more evident for the materials prepared from the iPP with the lowest molecular weight. These composites also shift their maximum degradation to lower values under inert atmosphere but keep rather unchanged decomposition behavior in oxidant conditions. No considerable changes are found with molecular weight in their morphological characteristics, nor in the type of iPP polymorph developed. The confinement of iPP chains in the SBA-15 channels, implied by a small endotherm in the DSC melting curves, is definitely ascertained by real-time variable-temperature Small Angle X-ray Scattering measurements with synchrotron radiation, suggesting, additionally, that somewhat thicker crystallites are developed within the mesostructure in the materials prepared from the iPP with inferior molecular weight. Moreover, the SBA-15 mesoporous particles exert a reinforcing role in all cases and reduce the deformation capacity of the ultimate materials as their content is increased.
机译:通过熔融挤出获得了基于两个全同立构聚丙烯(IPP)和中孔SBA-15二氧化硅的不同纳米复合材料,以试图了解平均分子量在流变行为,形态学和结晶特征和最终性质中的影响(热稳定性)和机械响应)以及在纳米SBA-15孔内掺入IPP链的能力。随着SBA-15含量的升高,观察到流变渗透的亲密性和粘度显着增加,对于用最低分子量的IPP制备的材料更明显。这些复合材料还将其最大劣化转移到惰性气氛下的较低值,但在氧化条件下保持相当不变的分解行为。在它们的形态特征中没有发现分子量的相当大的变化,也不存在于开发的IPP多晶型物的类型中。在DSC熔化曲线中的小型吸热中暗示的SBA-15通道中的IPP链的限制绝对通过具有同步辐射的实时变量 - 温度小角度X射线散射测量来确定,表明,这有点较厚的微晶在由下部分子量下由IPP制备的材料中的型材料中开发。此外,SBA-15中孔颗粒在所有情况下发挥增强作用,并在其含量增加时降低最终材料的变形能力。

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