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首页> 外文期刊>Nature Communications >Ordered three-dimensional interconnected nanoarchitectures in anodic porous alumina
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Ordered three-dimensional interconnected nanoarchitectures in anodic porous alumina

机译:阳极多孔氧化铝中的有序三维互连纳米结构

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摘要

Three-dimensional (3D) nanostructures combine properties of nanoscale materials with the advantages of being macro-sized pieces when the time comes to manipulate, measure their properties or make a device. However, the amount of compounds with the ability to self-organize in ordered 3D nanostructures is limited. Therefore, template-based fabrication strategies become the key approach towards 3D nanostructures. Here we report the simple fabrication of a template based on anodic aluminium oxide , having a well-defined, ordered, tunable, homogeneous 3D nanotubular network in the sub 100-nm range. The 3D templates are then employed to achieve 3D, ordered nanowire networks in Bi2Te3 and polystyrene. Finally, we demonstrate the photonic crystal behaviour of both the template and the polystyrene 3D nanostructure. Our approach may establish the foundations for future high-throughput, cheap, photonic materials and devices made of simple commodity plastics, metals and semiconductors.
机译:三维(3D)纳米结构结合了纳米级材料的特性,并具有在操作,测量其特性或制造设备时需要宏观尺寸的优点。但是,能够在有序3D纳米结构中自组织的化合物的数量受到限制。因此,基于模板的制造策略成为3D纳米结构的关键方法。在这里,我们报告了基于阳极氧化铝的模板的简单制造,该模板在100 nm以下的范围内具有定义明确,有序,可调谐,均匀的3D纳米管网络。然后使用3D模板在Bi 2 Te 3 和聚苯乙烯中实现3D有序纳米线网络。最后,我们展示了模板和聚苯乙烯3D纳米结构的光子晶体行为。我们的方法可能为将来由简单的商品塑料,金属和半导体制成的高通量,廉价,光子材料和设备奠定基础。

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