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Flexible high-loading particle-reinforced polyurethane magnetic nanocomposite fabrication through particle-surface-initiated polymerization

机译:通过粒子表面引发的聚合反应制备高弹性的高负荷粒子增强聚氨酯磁性纳米复合材料

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摘要

Flexible high-loading nanoparticle-reinforced polyurethane magnetic nanocomposites fabricated by the surface-initiated polymerization (SIP) method are reported. Extensive field emission scanning electron microscopic (SEM) and atomic force microscopic (AFM) observations revealed a uniform particle distribution within the polymer matrix. X-ray photoelectron spectrometry (XPS) and differential thermal analysis (DTA) revealed a strong chemical bonding between the nanoparticles and the polymer matrix. The elongation of the SIP nanocomposite under tensile test was about four times greater than that of the composite fabricated by a conventional direct mixing fabrication method. The nanocomposite shows particle-loading-dependent magnetic properties, with an increase of coercive force after the magnetic nanoparticles were embedded into the polymer matrix, arising from the increased interparticle distance and the introduced polymer-particle interactions.
机译:报道了通过表面引发聚合(SIP)方法制备的柔性高载量纳米颗粒增强聚氨酯磁性纳米复合材料。广泛的场发射扫描电子显微镜(SEM)和原子力显微镜(AFM)观察表明,聚合物基质内颗粒分布均匀。 X射线光电子能谱(XPS)和差热分析(​​DTA)显示出纳米颗粒与聚合物基质之间的牢固化学键合。在拉伸试验下,SIP纳米复合材料的伸长率是通过常规直接混合制备方法制备的复合材料的伸长率的约四倍。纳米复合材料表现出与颗粒加载有关的磁性,随着将磁性纳米颗粒嵌入聚合物基质中,矫顽力增加,这是由于颗粒间距离增加和引入的聚合物-颗粒相互作用引起的。

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