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Dispersion improvement of carbon nanotubes in epoxy resin using amphiphilic block copolymers

机译:两亲嵌段共聚物的环氧树脂中碳纳米管的分散改善

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Interface between Carbon NanoTubes (CNT) and epoxy matrix is admitted to play an important role in the dispersion quality and in the mechanical stress transfer. To improve the interfacial adhesion, we propose to chemically graft molecules onto CNT surface. To achieve this chemical modification, a controlled radical polymerization, named Nitroxide Mediated Polymerization NMP, is used to synthesize a diblock copolymer based on Acrylic Acid (PAA block) and Methyl MethAcrylate (PMMA block). In the present paper, this polymerization is performed "in situ". The PAA block presents a good affinity with the CNT which enable grafting. The PMMA miscibility with epoxy is expected to give a good adhesion - between the CNT and the matrix - and to bring a better dispersion. In order to compare the chemical modification and the physical adsorption of the copolymers onto CNT dispersion, the same block copolymer was synthesized with and without CNT. The copolymer synthesis was controlled and characterized by different methods as NMR ~1H (conversion and composition), SEC (molecular weight) and TGA (grafting density). We show that the better dispersion quality and better physical properties have been obtained with grafted CNT.
机译:碳纳米管(CNT)和环氧基质之间的界面被允许在分散质量和机械应力转移中发挥重要作用。为了改善界面粘附,我们将化学移植物分子提出到CNT表面上。为了实现这种化学改性,使用命名的硝基氧化物介导的聚合NMP的受控自由基聚合用于基于丙烯酸(PAA嵌段)和甲基丙烯酸甲酯(PMMA嵌段)合成二嵌段共聚物。在本文中,该聚合是“原位”进行。 PAA块与能够嫁接的CNT呈现出良好的亲和力。预计PMMA与环氧树脂的混溶性会在CNT和基质之间产生良好的粘附性 - 并带来更好的分散体。为了将化学改性和物理吸附与CNT分散体进行比较,合成了相同的嵌段共聚物,无需CNT。通过不同的方法控制共聚物合成作为NMR〜1H(转化率和组合物),秒(分子量)和TGA(移植密度)。我们表明,已经使用接枝CNT获得了更好的分散质量和更好的物理性质。

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