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Nanocomposites based on nanostructured PI-b-PMMA copolymer and selectively placed PMMA-modified magnetic nanoparticles: Morphological and magnetic characterization

机译:基于纳米结构的PI-b-PMMA共聚物和选择性放置的PMMA修饰的磁性纳米粒子的纳米复合材料:形态和磁性表征

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Hybrid organic/inorganic nanocomposites with magnetic properties have been prepared, based on nanostructured PI-b-PMMA block copolymer and selectively placed magnetic Fe2O3 nanoparticles. Magnetic nanoparticles have been functionalized with PMMA brushes by atom transfer radical polymerization in order to increase the compatibility with the PMMA block of the copolymer. The success of nanoparticle modification has been probed by infrared spectroscopy and thermogravimetric analysis. Morphological characterization of the neat block copolymer and the nanocomposites has been studied by small-angle X-ray scattering and atomic force microscopy measurements. For as cast films of nanocomposites, the surface perpendicular lamellar nanostructure was altered with the nanoparticle addition, and a morphology consisting on a mixture of surface parallel and perpendicular lamellae was formed for low nanoparticle amount, while for higher nanoparticle content some cylindrical domains were observed. For films annealed by solvent vapors, the cylindrical morphology of the neat copolymer thin film was maintained for low nanoparticle content, while the ordered morphology was disrupted for the highest nanofiller content. Magnetic characterization by vibrating sample magnetometer and superconducting quantum interference device has demonstrated that magnetic properties of nanoparticles have been transferred to the nanocomposites, exhibiting superparamagnetic behavior similar to that of the maghemite nanoparticles at room temperature. (C) 2016 Elsevier Ltd. All rights reserved.
机译:基于纳米结构的PI-b-PMMA嵌段共聚物并选择性放置磁性Fe2O3纳米粒子,制备了具有磁性的杂化有机/无机纳米复合材料。磁性纳米颗粒已经通过原子转移自由基聚合反应用PMMA刷进行功能化,以增加与共聚物的PMMA嵌段的相容性。纳米粒子修饰的成功已通过红外光谱和热重分析进行了探索。净嵌段共聚物和纳米复合材料的形态表征已通过小角度X射线散射和原子力显微镜测量进行了研究。对于作为纳米复合材料的流延膜,随着纳米颗粒的加入,表面垂直的层状纳米结构发生了改变,形成了由表面平行和垂直的薄片的混合物组成的形态,从而形成了较低的纳米颗粒数量,而对于较高的纳米颗粒含量则观察到一些圆柱形区域。对于通过溶剂蒸汽退火的薄膜,纯共聚物薄膜的圆柱形态保持低纳米粒子含量,而有序形态则破坏了最高纳米填料含量。通过振动样品磁力计和超导量子干涉装置的磁性表征表明,纳米粒子的磁性已经转移到纳米复合材料上,在室温下表现出类似于磁铁矿纳米粒子的超顺磁行为。 (C)2016 Elsevier Ltd.保留所有权利。

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