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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Effect of Iron Oxide Nanocrystal Content on the Morphology and Magnetic Properties of Polystyrene-block-poly(methyl methacrylate) Diblock Copolymer Based Nanocomposites
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Effect of Iron Oxide Nanocrystal Content on the Morphology and Magnetic Properties of Polystyrene-block-poly(methyl methacrylate) Diblock Copolymer Based Nanocomposites

机译:氧化铁纳米晶体含量对聚苯乙烯-嵌段-聚(甲基丙烯酸甲酯)二嵌段共聚物基纳米复合材料的形貌和磁性的影响

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摘要

Iron oxide nanocrystals, synthesized by surfactant-assisted thermal decomposition of Fe(CO)(5), were selectively incorporated into the microseparated PS block phase of polystyrene-block-poly(methyl methacrylate) (PS-b-PMMA) diblock copolymer to design novel nanostructured inorganic/organic materials with magnetic properties. The colloidal synthesis led to oleic acid- and oleylamine- capped magnetic gamma-Fe2O3 maghemite nanocrystals, which resulted well-dispersible in the block copolymer up to 60 wt % due to the affinity between PS block and organic surfactants. Atomic force and scanning electron microscopy confirmed that nanocomposites with nanocrystal loading lower than 40 wt % maintained cylindrical morphology, even without additional treatment applied to enhance their nanostructuration. Nanocrystals appeared well-dispersed in the nanocomposites at low contents, while nanocrystal clusters, with size depending on their loading, were observed at higher contents. At the highest nanocrystal content, the nanostructured area size decreased and nanocrystals covered the entire surface. Magnetic force microscopy measurements confirmed the magnetic behavior of gamma-Fe2O3 nanocrystals confined in PS block of PS-b-PMMA block copolymer after applying UV treatment to the samples. The results demonstrated that the incorporation of as-synthesized colloidal iron oxide nanocrystals (up to 40%) in self-assembled PS-b-PMMA block copolymer offers a simple and direct approach to successfully design and fabricate novel nanostructured magnetic composites.
机译:通过表面活性剂辅助热分解Fe(CO)(5)合成的氧化铁纳米晶体被选择性地掺入聚苯乙烯-嵌段-聚(甲基丙烯酸甲酯)(PS-b-PMMA)二嵌段共聚物的微分离PS嵌段相中进行设计具有磁性的新型纳米结构无机/有机材料。胶体合成导致油酸和油胺封端的磁性γ-Fe2O3磁赤铁矿纳米晶体,由于PS嵌段和有机表面活性剂之间的亲和力,其在嵌段共聚物中的分散性高达60 wt%。原子力和扫描电子显微镜证实,即使未进行额外的处理来增强其纳米结构,纳米晶体负载量低于40 wt%的纳米复合材料仍能保持圆柱状形态。纳米晶体在低含量下似乎很好地分散在纳米复合物中,而在较高含量下观察到大小取决于其负载的纳米晶体簇。在最高的纳米晶体含量下,纳米结构区域的尺寸减小并且纳米晶体覆盖整个表面。磁力显微镜测量结果证实,在对样品进行紫外线处理后,γ-Fe2O3纳米晶体的磁性表现在PS-b-PMMA嵌段共聚物的PS嵌段中。结果表明,在自组装的PS-b-PMMA嵌段共聚物中掺入合成的胶态氧化铁纳米晶体(最多40%)可提供一种简单直接的方法来成功设计和制造新型纳米结构磁性复合材料。

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