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用于提高等离子体纳米孔光学性能和化学稳定性的介电覆盖层原子层沉积。

Atomic layer deposition of dielectric overlayers for enhancing the optical properties and chemical stability of plasmonic nanoholes.

机构信息

Department of Electrical and Computer Engineering, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

ACS Nano. 2010 Feb 23;4(2):947-54. doi: 10.1021/nn901842r.

Abstract

Fabricating plasmonic nanostructures with robust optical and chemical properties remains a challenging task, especially with silver, which has superior optical properties but poor environmental stability. In this work, conformal atomic layer deposition (ALD) of thin alumina overlayers is used to precisely tune the optical transmission properties of periodic nanohole arrays made in gold and silver films. Experiments and computer simulations confirm that ALD overlayers with optimized thicknesses tune and enhance the transmitted intensity due to refractive index matching effects and by modifying the dielectric properties of each nanohole. Furthermore, encapsulating silver nanohole arrays with thin alumina overlayers protects the patterned surfaces against unwanted oxidation and contamination. The ability to precisely tune the optical properties while simultaneously providing robust chemical stability can benefit a broad range of applications, including biosensing and fluorescence imaging.

摘要

用具有稳健光学和化学性质的材料来制造等离子体纳米结构仍然是一项具有挑战性的任务,尤其是对于银来说,因为银具有优异的光学性质,但环境稳定性较差。在这项工作中,我们使用保形原子层沉积(ALD)在金和银薄膜中的周期性纳米孔阵列上沉积薄的氧化铝覆盖层,以精确地调整其光学透过率。实验和计算机模拟证实,具有优化厚度的 ALD 覆盖层可以通过折射率匹配效应和改变每个纳米孔的介电性质来调节和增强透过强度。此外,用薄的氧化铝覆盖层封装银纳米孔阵列可以防止图案化表面发生不必要的氧化和污染。这种精确调整光学性质的同时提供稳健化学稳定性的能力可以使许多应用受益,包括生物传感和荧光成像。

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