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Programmable nanoengineering templates for fabrication of three-dimensional nanophotonic structures

机译:用于制造三维纳米光子结构的可编程纳米工程模板

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摘要

Porous anodic alumina membranes (AAMs) have attracted great amount of attention due to their potential application as templates for nanoengineering. Template-guided fabrication and assembly of nanomaterials based on AAMs are cost-effective and scalable methods to program and engineer the shape and morphology of nanostructures and nanomaterials. In this work, perfectly ordered AAMs with the record large pitch up to 3 μm have been fabricated by properly controlling the anodization conditions and utilization of nanoimprint technique. Due to the capability of programmable structural design and fabrication, a variety of nanostructures, including nanopillar arrays, nanotower arrays, and nanocone arrays, have been successfully fabricated using nanoengineered AAM templates. Particularly, amorphous Si nanocones have been fabricated as three-dimensional nanophotonic structures with the characterization of their intriguing optical anti-reflection property. These results directly indicate the potential application of the reported approach for photonics and optoelectronics.
机译:多孔阳极氧化铝膜(AAM)由于其作为纳米工程模板的潜在应用而备受关注。以模板为指导的基于AAM的纳米材料的制造和组装是一种经济高效且可扩展的方法,可对纳米结构和纳米材料的形状和形态进行编程和工程设计。在这项工作中,通过适当地控制阳极氧化条件和利用纳米压印技术,已经制造出具有3μm的记录大间距的完美有序AAM。由于可编程结构设计和制造的能力,已经使用纳米工程化的AAM模板成功制造了各种纳米结构,包括纳米柱阵列,纳米塔阵列和纳米锥阵列。特别地,非晶硅纳米锥已经被制造为三维纳米光子结构,其特征在于其令人着迷的光学抗反射特性。这些结果直接表明所报道的方法在光子学和光电子学中的潜在应用。

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