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首页> 外文期刊>Topics in Catalysis >In-situ Polymerization of Olefins on Nanoparticles or Fibers by Metallocene Catalysts
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In-situ Polymerization of Olefins on Nanoparticles or Fibers by Metallocene Catalysts

机译:茂金属催化剂在纳米颗粒或纤维上原位聚合烯烃

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摘要

This paper shows the capability and advantage of the in-situ polymerization of olefins as a technique for the preparation of nanocomposites. The nanocomposites base on high molecular weight and highly isotactic poly-propylenes and oxidized multi-walled carbon nanotubes (HMWiPP/MWCNT). Since a good interfacial adhesion between the matrix and the filler is crucial for the successful preparation of nanocomposites the polymerizations were performed with MAO anchored covalently to the surface of the nanotubes. Thus, a heterogeneous co-catalyst is formed and the polymerization starts directly on the tube surface. The resulting nanocomposites contain 0.9-25 wt% multi-walled carbon nanotubes and polypropylene with a molecular weight of about 1.4 x 10~6 g/mol. They were investigated with respect to their properties, like crystallization and melting temperature, as well as half-time of crystallization which decreases very strong in dependence on a rising filler content. The morphology analysis shows a homogeneous CNT distribution, a good separation of the individual particles, a very good interfacial adhesion and that every nanotube is covered by a thin polymer layer.
机译:本文显示了烯烃原位聚合作为制备纳米复合材料的技术的能力和优势。纳米复合材料基于高分子量和高度全同立构的聚丙烯和氧化的多壁碳纳米管(HMWiPP / MWCNT)。由于基质和填料之间的良好界面粘合对于成功制备纳米复合材料至关重要,因此聚合反应是利用共价锚定在纳米管表面的MAO进行的。因此,形成多相助催化剂,并且聚合直接在管表面上开始。所得的纳米复合材料包含0.9-25重量%的多壁碳纳米管和分子量约1.4×10-6g / mol的聚丙烯。对它们的性能进行了研究,例如结晶度和熔融温度,以及结晶时间的一半,随着填料含量的增加,结晶时间的下降非常强烈。形态分析显示出均匀的CNT分布,单个颗粒的良好分离,非常好的界面附着力以及每个纳米管都被薄的聚合物层覆盖。

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