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Dielectric properties of modified graphene oxide filled polyurethane nanocomposites and its correlation with rheology

机译:改性氧化石墨烯填充聚氨酯纳米复合材料的介电性能及其与流变学的关系

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摘要

This study aims at investigating the dynamic mechanical, dielectric and rheological properties of reinforced polyurethane (PU) nanocomposites containing hydrophilic graphene oxide (GO) and/or hydropho-bic modified graphene oxide (mGO) sheets. The organic modification of GO was performed with 4,4'-methylenebis (phenyl isocyanate) (MDI) and the samples were prepared by solvent mixing. We found that addition of mGO provides a more significant increase in the dielectric permittivity as compared to the addition of GO. Scanning electron microscopy (SEM) and X-ray diffraction (XRD) spectroscopy demonstrate the more effective dispersion of thin exfoliated sheets of mGO in the PU matrix as compared to unmodified GO. This qualitative morphology observation is correlated with the quantitative results inferred from the dynamic mechanical analysis, rheology and dielectric studies. The viscoelastic Payne effect is noticed for all nanocomposites and the filler-filler and polymer-filler interactions are studied by applying the Kraus and Maier and Goritz models. The non-linear viscoelastic behavior of the PU nanocomposites is in good agreement with the Maier and Goritz model, which includes the effects of the adsorption/desorption of PU chains on the filler surface. The observed results underline the possibilities of PU composites with organically modified GO sheets in capacitor applications.
机译:这项研究旨在研究包含亲水氧化石墨烯(GO)和/或疏水改性氧化石墨烯(mGO)片的增强型聚氨酯(PU)纳米复合材料的动态力学,介电和流变性能。用4,4'-亚甲基双(异氰酸苯酯)(MDI)进行GO的有机修饰,并通过溶剂混合制备样品。我们发现,与GO相比,添加mGO可以使介电常数显着提高。扫描电子显微镜(SEM)和X射线衍射(XRD)光谱表明,与未改性的GO相比,mGO的薄片状薄剥离片在PU基质中的分散更为有效。这种定性的形态观察与动态力学分析,流变学和介电研究得出的定量结果相关。粘弹性佩恩效应在所有纳米复合材料中均可见,并且通过应用Kraus和Maier和Goritz模型研究了填料-填料和聚合物-填料的相互作用。 PU纳米复合材料的非线性粘弹性行为与Maier和Goritz模型非常吻合,该模型包括PU链在填料表面吸附/解吸的影响。观察到的结果强调了有机改性GO片材的PU复合材料在电容器应用中的可能性。

著录项

  • 来源
    《Composites Science and Technology》 |2014年第11期|18-25|共8页
  • 作者单位

    LIMATB Laboratory, Universite de Bretagne Sud, rue St Maude, 56100 Lorient, France, Soft Matter, Rheology and Technology Group, Department of Chemical Engineering, Katholieke Universiteit Leuven, Willem de Croylaan 46, Box 2423, BE3001 Leuven, Belgium;

    School of Chemical Sciences, Mahatma Gandhi University, Kottayam 686560, Kerala, India;

    Department of Mechanical and Industrial Engineering, University of Illinois at Chicago, Chicago, IL 60607, USA;

    Gdansk University of Technology, Chemical Faculty, Department of Polymer Technology, G. Narutowicza Str. 17/12, 80-233 Gdansk, Poland;

    Soft Matter, Rheology and Technology Group, Department of Chemical Engineering, Katholieke Universiteit Leuven, Willem de Croylaan 46, Box 2423, BE3001 Leuven, Belgium;

    Soft Matter, Rheology and Technology Group, Department of Chemical Engineering, Katholieke Universiteit Leuven, Willem de Croylaan 46, Box 2423, BE3001 Leuven, Belgium;

    School of Chemical Sciences, Mahatma Gandhi University, Kottayam 686560, Kerala, India;

    LIMATB Laboratory, Universite de Bretagne Sud, rue St Maude, 56100 Lorient, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Functional composites; A. Polymer-matrix composites; B. Non-linear behavior; C. Modelling; D. Scanning electron microscopy;

    机译:A.功能复合材料;A.聚合物基复合材料;B.非线性行为;C.建模;D.扫描电子显微镜;

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