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Polyethylene/palygorskite nanocomposites with macromolecular comb structure via in situ polymerization

机译:通过原位聚合制备具有大分子梳状结构的聚乙烯/坡缕石纳米复合材料

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摘要

Polyethylene/palygorskite nanocomposites with "macromolecular comb" structure were prepared via in situ polymerization. The TiCl4 catalyst was first loaded on the surface of the nanoscale whiskers of palygorskite. Subsequently the ethylene was introduced into the reaction system, and the polyethylene molecular chain was generated directly at the surface of the palygorskite whiskers. As a result, a polyethylene molecular chain with "macromolecular comb" structure was generated. The product thus obtained was blended with regular polyethylene to make a polymer blend, which was characterized by transmission electron microscope (TEM). Finely dispersed palygorskite whiskers in polyethylene matrix were found, which resulted in the improvement of mechanical strength of the polymer blends. Compared with regular polyethylene, the impact strength and tensile strength of the polymer blend were improved by 63.5% and 21.3% respectively at 25degreesC, when the palygorskite content of the nanocomposite was 20 wt%. (C) 2003 Kluwer Academic Publishers. [References: 11]
机译:通过原位聚合制备具有“大分子梳”结构的聚乙烯/坡缕石纳米复合材料。首先将TiCl4催化剂负载在坡缕石的纳米级晶须表面。随后将乙烯引入反应体系,并在坡缕石晶须表面直接生成聚乙烯分子链。结果,产生了具有“大分子梳”结构的聚乙烯分子链。将由此获得的产物与常规聚乙烯共混以制备聚合物共混物,其通过透射电子显微镜(TEM)表征。发现在聚乙烯基体中细分散的坡缕石晶须,这导致聚合物共混物的机械强度提高。与常规聚乙烯相比,当纳米复合材料的凹凸棒石含量为20wt%时,在25℃下聚合物共混物的冲击强度和拉伸强度分别提高了63.5%和21.3%。 (C)2003 Kluwer学术出版社。 [参考:11]

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