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Elaboration and Characterization of Conductive Polymer Nanocomposites with Potential Use as Electrically Driven Membranes

机译:精细加工和表征导电聚合物纳米复合材料潜在用作电驱动膜

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摘要

In this work, a general, facile, and relatively low-cost method to produce electrically driven non-porous membranes by revalorization of recycled polyolefins is proposed. The polymer matrices are poly(propylene) (PP) and poly(ethylene) (PE) and their corresponding recycled samples, which are respectively mixed with carbon nanotubes (CNT). The performances of the elaborated nanocomposites are studied by morphological, rheological, and electrical conductivity tests. The Joule heating effect is evaluated by applying an electric field and recording the corresponding temperature rise. An increase of 90 °C is obtained in certain cases, which represents the highest temperature enhancement reached so far by the Joule effect in thermoplastics, to our knowledge. The work shows a route to develop stimulus (voltage)-response (temperature) materials with low cost and with potential applications in many fields. As an example, the increase of the permeability with temperature of membranes made of the indicated nanocomposites, is analyzed.
机译:在这项工作中,提出了一种通用的,简便且相对低成本的方法,该方法通过对回收的聚烯烃进行重气化来生产电驱动的无孔膜。聚合物基质是分别与碳纳米管(CNT)混合的聚丙烯(PP)和聚乙烯(PE)及其相应的回收样品。通过形态学,流变学和电导率测试研究了精制的纳米复合材料的性能。通过施加电场并记录相应的温升来评估焦耳热效应。在某些情况下,可以提高90°C,据我们所知,这是迄今为止在热塑性塑料中的焦耳效应达到的最高温度升高。这项工作显示了开发低成本(在许多领域具有潜在应用)的刺激(电压)响应(温度)材料的途径。例如,分析了由所示的纳米复合材料制成的膜的渗透性随温度的增加。

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