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In situ Preparation and Property Investigation of Polypropylene/Fumed Silica Nanocomposites

机译:聚丙烯/气相法二氧化硅纳米复合材料的原位制备及性能研究

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摘要

We present the preparation of polypropylene (PP)/ fumed silica (FS) nanocomposites via in situ polymerization in this article. The approach includes preparation and utilization of a bisupported Ziegler-Natta catalytic system in which magnesium ethoxide and FS are used as conjugate supports of the catalyst. Catalyst preparation and polymerization processes are carried out in the slurry phase and under argon atmosphere. Scanning electron microscopy images show a good dispersion of the FS throughout the PP matrix. Results from differential scanning calorimetry reveal that the crystallization temperature of prepared nanocomposites increases by increasing FS loading. Also, crystal content of nanocomposites increases as the FS concentration increases up to 3.48 wt%. Nanocomposites containing <3.14 wt% of nanoparticles do not show considerable change in their melting point where with more increment in filler concentration, melting temperature slightly increases. Thermogravimetric analysis shows a considerable improvement in the thermal stability of PP/FS nanocomposites compared to pure PP. Rheological studies indicate that the incorporation of FS into PP matrix results in increment in storage modulus, loss modulus, and complex viscosity of polymeric matrix, particularly in low frequency region. By increasing FS loading, the PP/FS nanocomposites show a transition from liquid-like to solid-like viscoelasticity behavior depicting microstructural changes in their structures.
机译:本文介绍了通过原位聚合制备聚丙烯(PP)/气相二氧化硅(FS)纳米复合材料的方法。该方法包括制备和利用双载体齐格勒-纳塔催化体系,其中乙醇镁和FS被用作催化剂的共轭载体。催化剂的制备和聚合过程在淤浆相中并在氩气气氛下进行。扫描电子显微镜图像显示FS在整个PP基质中的良好分散。差示扫描量热法的结果表明,制备的纳米复合材料的结晶温度通过增加FS负载而增加。而且,随着FS浓度增加至3.48wt%,纳米复合材料的晶体含量增加。包含<3.14wt%的纳米颗粒的纳米复合材料在其熔点上没有显示出显着的变化,其中随着填料浓度的更多增加,熔融温度略微升高。热重分析表明,与纯PP相比,PP / FS纳米复合材料的热稳定性有了显着提高。流变学研究表明,将FS掺入PP基体中会导致聚合物基体的储能模量,损耗模量和复数粘度增加,尤其是在低频区域。通过增加FS负载,PP / FS纳米复合材料表现出从液态到固态的粘弹性行为的转变,描述了其结构的微观结构变化。

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