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Silica Supported Single-Walled Carbon Nanotubes as a Modifier in Polyethylene Composites

机译:二氧化硅支持的单壁碳纳米管作为聚乙烯复合材料的改性剂

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Composites have been made from single-wall carbon nanotubes in a polyethylene (PE) matrix, in which different methods of preparation were used to disperse the nanotubes. The study includes using either the refined pure nanotubes (P-NT) as the source, or the original silica supported nanotubes (SS-NT). SS-NT contained nanotubes still incorporated in and around the silica as originally grown. Composites were then made by (1) coprecipitation from a suspension of P-NT or SS-NT in a PE solution, or (2) by forming a polymerization catalyst from the SS-NT, and using it to polymerize ethylene, which ruptures and expands the silica as polymer builds LIP ill the pores. Extrusion was also studied as a method of additional dispersion. Nanotubes were found to have a powerful effect on the melt rheology, increasing the low shear viscosity dramatically. Increasing the nanotube concentration also increased the flexural and tensile moduli, decreased the elongation, and increased the electrical conductivity. Consistent trends were observed from all of these diverse properties: SS-NT had a stronger effect than P-NT, and within the SS-NT group the choice of silica type also had a major effect. Polymerization was generally preferred as the method of dispersing the nanotubes. The conductivity, which in some cases was quite high, was found to be pressure sensitive. Conductive NT/PE composites could be molded into films or extruded into other shapes, or comolded with other PE. (C) 2008 Wiley Periodicals, Inc. J Appl Polym Sci 111: 589-601, 2009
机译:复合材料已经由聚乙烯(PE)基质中的单壁碳纳米管制成,其中使用了不同的制备方法来分散纳米管。研究包括使用精制的纯纳米管(P-NT)作为来源,或使用原始的二氧化硅负载的纳米管(SS-NT)。 SS-NT包含的纳米管仍以最初生长的方式并入二氧化硅中和周围。然后通过(1)从P-NT或SS-NT在PE溶液中的悬浮液中共沉淀,或(2)通过由SS-NT形成聚合催化剂,并使用其聚合乙烯,使乙烯断裂而制备复合材料。当聚合物在孔中形成LIP时,膨胀二氧化硅。还研究了挤出作为额外分散的方法。发现纳米管对熔体流变性具有强大的影响,可显着提高低剪切粘度。增加纳米管浓度还增加了弯曲模量和拉伸模量,降低了伸长率,并增加了电导率。从所有这些不同的特性中观察到一致的趋势:SS-NT的作用强于P-NT,在SS-NT组中,二氧化硅类型的选择也起主要作用。通常优选聚合作为分散纳米管的方法。发现在某些情况下非常高的电导率对压力敏感。导电NT / PE复合材料可以模制成膜或挤出成其他形状,或与其他PE模压在一起。 (C)2008 Wiley Periodicals,Inc. J Appl Polym Sci 111:589-601,2009

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