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纳米压印光纤:用于表面增强拉曼光谱传感的生物模板纳米结构

Nanoimprinted optical fibres: Biotemplated nanostructures for SERS sensing.

作者信息

Kostovski G, White D J, Mitchell A, Austin M W, Stoddart P R

机构信息

Microelectronics and Materials Technology Centre (MMTC), School of Electrical and Computer Engineering, RMIT University, Melbourne, VIC 3001, Australia.

出版信息

Biosens Bioelectron. 2009 Jan 1;24(5):1531-5. doi: 10.1016/j.bios.2008.10.016. Epub 2008 Nov 5.

Abstract

Optical fibre surface-enhanced Raman scattering (SERS) sensors offer a potential solution for monitoring low chemical concentrations in remote or in situ sensing scenarios. The SERS effect relies on the interaction of analyte molecules with nanostructured metal surfaces. We demonstrate a nanoscale biotemplating approach to fabricating these sensors, using nanoimprint lithography to replicate cicada wing antireflective nanostructures onto the end faces of standard silica optical fibres. These SERS-compatible nanoarrays are coated with silver to make them SERS active, and thiophenol and rhodamine 6G are used as test analytes, from which strong SERS spectra are collected using both direct endface illumination and through-fibre interrogation. This combination of biological templates with nanoscale replication and optical fibres demonstrates a high-resolution, low-cost approach to fabricating high-performance optical fibre SERS sensors.

摘要

光纤表面增强拉曼散射(SERS)传感器为在远程或原位传感场景中监测低化学浓度提供了一种潜在的解决方案。SERS效应依赖于分析物分子与纳米结构金属表面的相互作用。我们展示了一种用于制造这些传感器的纳米级生物模板方法,利用纳米压印光刻技术将蝉翼抗反射纳米结构复制到标准石英光纤的端面上。这些与SERS兼容的纳米阵列涂有银以使其具有SERS活性,并使用硫酚和罗丹明6G作为测试分析物,通过直接端面照明和光纤内部检测都能从中收集到强烈的SERS光谱。生物模板与纳米级复制和光纤的这种结合展示了一种制造高性能光纤SERS传感器的高分辨率、低成本方法。

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