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Preparation of core–shell structured metal–organic framework@PANI nanocomposite and its electrorheological properties

机译:核-壳结构的金属-有机骨架@PANI纳米复合材料的制备及其流变特性

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A novel core–shell-type electrorheological (ER) composite material was fabricated via using polyaniline as an insulating layer to the outer surface of the core conductive metal–organic framework (MIL-125) with controlled size and morphology. MIL-125 was firstly synthesized by a solvothermal method, and then polyaniline was synthesized in a polar solvent and a tight coating was successfully achieved to form a MIL-125@PANI core–shell nanocomposite. This core–shell structure greatly enhances the polarization ability of dispersed particles, thereby improving their rheological properties. The morphology of pure MIL-125 and MIL-125@PANI has been characterized by transmission electron microscopy (TEM) and scanning electron microscopy (SEM). Their structure was characterized by X-ray powder diffraction. Moreover, the ER activity of MIL-125-based and MIL-125@PANI-based ER fluids by dispersing the particles into silicone oil was studied using a rotational rheometer. The results show that the MIL-125@PANI composite particles have higher ER properties.
机译:通过使用聚苯胺作为芯层导电金属-有机骨架(MIL-125)外表面的绝缘层,并控制尺寸和形貌,制造了一种新颖的芯-壳型电流变(ER)复合材料。首先通过溶剂热法合成MIL-125,然后在极性溶剂中合成聚苯胺,并成功地形成了紧密的涂层,形成了MIL-125 @ PANI核壳纳米复合材料。这种核-壳结构极大地增强了分散颗粒的极化能力,从而改善了其流变性。纯MIL-125和MIL-125 @ PANI的形态已通过透射电子显微镜(TEM)和扫描电子显微镜(SEM)表征。它们的结构通过X射线粉末衍射表征。此外,使用旋转流变仪研究了通过将颗粒分散到硅油中的基于MIL-125和MIL-125 @ PANI的ER流体的ER活性。结果表明,MIL-125 @ PANI复合颗粒具有较高的ER性能。

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