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Design and fabrication of a 3D-structured gold film with nanopores for local electric field enhancement in the pore

机译:设计和制造具有纳米孔的3D结构金膜,用于增强孔中的局部电场

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摘要

Three-dimensionally structured gold membrane films with nanopores of defined, periodic geometries are designed and fabricated to provide the spatially localised enhancement of electric fields by manipulation of the plasmons inside nanopores. Square nanopores of different size and orientation relative to the pyramid are considered for films in aqueous and air environments, which allow for control of the position of electric fields within the structure. Designs suitable for use with 780 nm light were created. Here, periodic pyramidal cavities produced by potassium hydroxide etching to the {111} planes of (100) silicon substrates are used as templates for creating a periodic, pyramidal structured, free-standing thin gold film. Consistent with the findings from the theoretical studies, a nano-sized hole of 50 nm square was milled through the gold film at a specific location in the cavity to provide electric field control which can subsequently used for enhancement of fluorescence or Raman scattering of molecules in the nanopore.
机译:设计和制造具有确定的周期性几何结构的纳米孔的三维结构金膜薄膜,以通过操纵纳米孔内部的等离激元来提供电场的空间局部增强。对于水性和空气环境中的薄膜,考虑了相对于棱锥具有不同大小和方向的方形纳米孔,从而可以控制电场在结构内的位置。创建了适用于780 nm光的设计。在此,将通过氢氧化钾蚀刻至(100)硅基板的{111}平面而产生的周期性金字塔形腔体用作模板,以创建周期性的,金字塔形结构的,自支撑的金薄膜。与理论研究的结果一致,在腔体中的特定位置通过金膜铣削了一个50 nm见方的纳米孔,以提供电场控制,随后可用于增强分子中的荧光或拉曼散射。纳米孔。

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