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Hierarchically built hetero-superstructure arrays with structurally controlled material compositions

机译:具有结构受控的材料成分的分层构建的异质超结构阵列

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Hierarchical assemblies are repeatedly encountered in nature, and when replicated in synthetic patterns and materials, can enhance their functionality or impart multifunctionality. In order to assemble a hierarchical superstructure that consists of components made up of multiple nanostructures, control over placement and stoichiometry is desirable. Macroscopic arrays that present up to three levels of hierarchy are demonstrated here and are achieved using the self-assembly of soft, collapsible block copolymer nanospheres for the first two levels, followed by directed self-assembly of metal nanospheres for the third. The fabrication approach combines advantages of soft sphere self-assembly to yield non-close-packed and variable array pitch values, with the inherent chemical functionality presented by the polymer-based soft spheres; these assemblies can then be transformed into a range of different materials, including metal or semiconductor nanostructures, or further tailored with an additional level of complexity. Structural investigation shows the superstructure formation to be governed by generic design rules that can be extended across different material combinations.
机译:分层程序集在自然界中屡屡遇到,并且当以合成模式和材料复制时,可以增强其功能或赋予多功能性。为了组装由多个纳米结构组成的部件组成的分层上层结构,需要控制位置和化学计量。此处展示了呈现多达三个层次结构的宏观阵列,并通过对前两个层次使用可折叠的软嵌段共聚物纳米球进行自组装,然后对第三层进行了金属纳米球的定向自组装来实现。这种制造方法结合了软球自组装的优势,可以产生非密排和可变的阵列间距值,以及基于聚合物的软球所具有的固有化学功能。然后,可以将这些组件转换为各种不同的材料,包括金属或半导体纳米结构,或者进一步进行定制以增加复杂性。结构研究表明,上部结构的形成受通用设计规则支配,这些规则可以扩展到不同的材料组合中。

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