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Self-directed self-assembly of nanoparticle/copolymer mixtures

机译:纳米粒子/共聚物混合物的自指导自组装

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The organization of inorganic nanostructures within self-assembled organic or biological templates(1-11) is receiving the attention of scientists interested in developing functional hybrid materials. Previous efforts have concentrated on using such scaffolds(7,9,12) to spatially arrange nanoscopic elements as a strategy for tailoring the electrical, magnetic or photonic properties(8) (- 11,13 - 16) of the material. Recent theoretical arguments(16 - 18) have suggested that synergistic interactions between self-organizing particles and a self-assembling matrix material can lead to hierarchically ordered structures. Here we show that mixtures of diblock copolymers and either cadmium selenide- or ferritin-based nanoparticles exhibit cooperative, coupled self-assembly on the nanoscale. In thin films, the copolymers assemble into cylindrical domains, which dictate the spatial distribution of the nanoparticles; segregation of the particles to the interfaces mediates interfacial interactions and orients the copolymer domains normal to the surface, even when one of the blocks is strongly attracted to the substrate. Organization of both the polymeric and particulate entities is thus achieved without the use of external fields(10,19), opening a simple and general route for fabrication of nanostructured materials with hierarchical order.
机译:自组装的有机或生物模板(1-11)中无机纳米结构的组织正受到对开发功能杂化材料感兴趣的科学家的注意。先前的努力集中在使用此类支架(7,9,12)来在空间上布置纳米级元素,作为调整材料的电,磁或光子特性(8)(-11,13-16)的策略。最近的理论论证(16-18)表明,自组织粒子与自组装基质材料之间的协同相互作用可导致分层有序的结构。在这里,我们显示了二嵌段共聚物与硒化镉或铁蛋白基纳米粒子的混合物在纳米级上表现出协同的,耦合的自组装。在薄膜中,共聚物组装成圆柱状区域,从而决定了纳米粒子的空间分布。即使当嵌段之一被强烈地吸引到基底上时,颗粒与界面的分离也会介导界面相互作用并使共聚物区域垂直于表面取向。这样就可以在不使用外部场的情况下实现聚合物和颗粒实体的组织(10,19),从而开辟了一条简单而通用的途径来制造具有等级顺序的纳米结构材料。

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