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Influence of Initial Mixing Methods on Melt-Extruded Single-Walled Carbon Nanotube-Polypropylene Nanocomposites

机译:初始混合方法对熔体挤出单壁碳纳米管-聚丙烯纳米复合材料的影响

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摘要

We report the first direct comparison of melt-extruded polypropylene-single-walled carbon nanotube (PP/ SWNT) nanocomposites prepared by three different initial mixing methods. The standard deviation of the G-band intensity obtained using Raman mapping was found to be the best measure of dispersion uniformity in the extruded composites, and dispersion uniformity was found to generally correlate with rheological and thermal properties. For all three initial mixing methods, both unmodified and sidewall-functionalized purified SWNTs were evaluated. Surprisingly, in all cases, dodecylated SWNTs prepared using the reductive alkylation method were less uniformly dispersed in the final composite than the unmodified SWNTs. The simplest process, dry blending, resulted in poor nanotube dispersion and only polymer crystallization was significantly affected by the presence of the nanotubes. A slightly more complex rotary evaporation process resulted in significantly more uniform dispersion and significant changes in rheological properties, polymer crystallization, and thermal stability. The most elaborate process tested, hot coagulation, enabled the most uniform dispersion and the greatest change in properties but also resulted in some polymer degradation. [PUBLICATION ABSTRACT]
机译:我们报道了通过三种不同的初始混合方法制备的熔融挤出聚丙烯-单壁碳纳米管(PP / SWNT)纳米复合材料的首次直接比较。发现使用拉曼映射获得的G带强度的标准偏差是挤出复合材料中分散均匀性的最佳度量,并且发现分散均匀性通常与流变和热学性质相关。对于所有三种初始混合方法,均评估了未修饰的和侧壁官能化的纯化SWNT。令人惊讶的是,在所有情况下,与未改性的SWNT相比,使用还原烷基化方法制备的十二烷基化的SWNT在最终复合物中的分散性较差。最简单的过程,干混,导致不良的纳米管分散,并且只有聚合物结晶才受到纳米管的影响。旋转蒸发过程稍微复杂一点,导致分散均匀得多,流变性,聚合物结晶和热稳定性也发生了明显变化。经过测试的最复杂的过程是热凝结,它可以实现最均匀的分散和最大的性能变化,但也导致聚合物降解。 [出版物摘要]

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    《Polymer Engineering and Science》 |2010年第9期|p.1831-1842|共12页
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    Vinod K. Radhakrishnan,1 Edward W. Davis,2 Virginia A. Davis11 Department of Chemical Engineering, Auburn University, Auburn, Alabama 368492 Department of Polymer and Fiber Engineering, Auburn University, Auburn, Alabama 36849Correspondence to: Virginia A. Davis, e-mail: davisva@auburn.eduContract grant sponsor: Alabama Center for Nanostructured Materials (National Science Foundation), contract grant number: EPS-0814103.DOI 10.1002/pen.21696View this article online at wileyonlinelibrary.com.© 2010 Society of Plastics Engineers,;

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