首页> 外文期刊>New Journal of Chemistry >Renewable resource derived aliphatic hyperbranched polyurethane/aluminium hydroxide-reduced graphene oxide nanocomposites as robust, thermostable material with multi-stimuli responsive shape memory features
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Renewable resource derived aliphatic hyperbranched polyurethane/aluminium hydroxide-reduced graphene oxide nanocomposites as robust, thermostable material with multi-stimuli responsive shape memory features

机译:可再生资源衍生脂族超支化聚氨酯/氢氧化铝还原的石墨烯氧化物纳米复合材料,作为鲁棒,热稳定材料,具有多刺激响应形状记忆功能

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摘要

An eco-friendly, high performance renewable resource derived aliphatic hyperbranched polyurethane nanocomposite was developed with an aluminium hydroxide-reduced graphene oxide nanohybrid by an in situ fabrication technique. The aluminium hydroxide-reduced graphene oxide nanohybrid was prepared by a facile route. The prepared nanohybrid and nanocomposites were characterized by using different spectroscopic and analytical techniques. Various properties of the nanocomposites were evaluated. The nanocomposites exhibited remarkable enhancement in tensile strength (350%), elongation at break (292%) and toughness (441%), in comparison with the pristine polymer. The developed system showed high thermal stability (initial degradation temperatures up to 315 degrees C). The nanocomposites also demonstrated excellent multi-stimuli triggered shape memory attributes under thermal energy (60 degrees C), microwaves (300 W), and sunlight (10(5) lux). Both the polymer matrix and the nanohybrid contributed to the overall performance of the nanocomposite. The performance of the nanocomposite was found to be dose-dependent on the nanomaterial loading. Thus, development of such multi-faceted materials holds promise for advanced applications.
机译:一种环保的高性能再生性资源衍生的脂族超支化聚氨酯纳米复合材料通过氢氧化铝 - 氧化铝氧化物纳米冬冬冬冬冬冬冬冬冬冬冬冬冬冬胺开发出来。氢氧化铝还原的石墨烯氧化物纳米含量通过容纳途径制备。通过使用不同的光谱和分析技术,表征制备的纳米冬次和纳米复合材料。评价纳米复合材料的各种性质。与原始聚合物相比,纳米复合材料表现出显着的拉伸强度(350%),断裂伸长(292%)和韧性(441%)的增强。开发系统显示出高热稳定性(初始劣化温度高达315℃)。纳米复合材料还在热能(60摄氏度),微波(300W)和阳光(10(5)勒克斯)下展示了优异的多刺激触发形状记忆属性。聚合物基质和纳米冬次均导致纳米复合材料的总体性能。发现纳米复合材料的性能是剂量依赖于纳米材料载荷。因此,这种多面材料的开发能够对高级应用具有承担的承担。

著录项

  • 来源
    《New Journal of Chemistry》 |2017年第17期|共10页
  • 作者

    Bayan Rajarshi; Karak Niranjan;

  • 作者单位

    Tezpur Univ Dept Chem Sci Adv Polymer &

    Nanomat Lab Tezpur 784028 Assam India;

    Tezpur Univ Dept Chem Sci Adv Polymer &

    Nanomat Lab Tezpur 784028 Assam India;

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

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