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Facile design of ultra-thin anodic aluminum oxide membranes for the fabrication of plasmonic nanoarrays

机译:超薄阳极氧化铝膜制备等离子体纳米阵列的外观设计

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摘要

Ultra-thin anodic aluminum oxide (AAO) membranes are efficient templates for the fabrication of patterned nanostructures. Herein, a three-step etching method to control the morphology of AAO is described. The morphological evolution of the AAO during phosphoric acid etching is systematically investigated and a nonlinear growth mechanism during unsteady-state anodization is revealed. The thickness of the AAO can be quantitatively controlled from similar to 100 nm to several micrometers while maintaining the tunablity of the pore diameter. The AAO membranes are robust and readily transferable to different types of substrates to prepare patterned plasmonic nanoarrays such as nanoislands, nanoclusters, ultra-small nanodots, and core-satellite superstructures. The localized surface plasmon resonance from these nanostructures can be easily tuned by adjusting the morphology of the AAO template. The custom AAO template provides a platform for the fabrication of low-cost and large-scale functional nanoarrays suitable for fundamental studies as well as applications including biochemical sensing, imaging, photocatalysis, and photovoltaics.
机译:超薄阳极氧化铝(AAO)膜是用于制备图案化纳米结构的有效模板。这里,描述了一种控制AAO形态的三步蚀刻方法。系统地研究了磷酸蚀刻期间AaO的形态学越野,并揭示了在不稳定状态阳极氧化期间的非线性生长机理。可以将AaO的厚度定量地从类似于100nm到几微米的同时定量控制,同时保持孔径的调谐度。 AAO膜具有稳健,可容易地可转移到不同类型的基材以制备图案化的等离子体纳米载体,例如纳米岛,纳米燃烧剂,超小纳米棒和核卫星上层建筑物。通过调节AAO模板的形态,可以容易地调整来自这些纳米结构的局部表面等离子体共振。定制AAO模板为适用于基本研究的低成本和大规模功能纳米阵列的制造平台以及包括生物化学传感,成像,光催化和光伏等的应用。

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