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利用金属纳米孔实现快速超灵敏单颗粒表面增强拉曼光谱学。

Rapid ultrasensitive single particle surface-enhanced Raman spectroscopy using metallic nanopores.

机构信息

Department of Chemistry, Imperial College London , South Kensington Campus, London, SW7 2AZ, United Kingdom.

出版信息

Nano Lett. 2013 Oct 9;13(10):4602-9. doi: 10.1021/nl402108g. Epub 2013 Sep 16.

Abstract

Nanopore sensors embedded within thin dielectric membranes have been gaining significant interest due to their single molecule sensitivity and compatibility of detecting a large range of analytes, from DNA and proteins, to small molecules and particles. Building on this concept we utilize a metallic Au solid-state membrane to translocate and rapidly detect single Au nanoparticles (NPs) functionalized with 589 dye molecules using surface-enhanced resonance Raman spectroscopy (SERRS). We show that, due to the plasmonic coupling between the Au metallic nanopore surface and the NP, signal intensities are enhanced when probing analyte molecules bound to the NP surface. Although not single molecule, this nanopore sensing scheme benefits from the ability of SERRS to provide rich vibrational information on the analyte, improving on current nanopore-based electrical and optical detection techniques. We show that the full vibrational spectrum of the analyte can be detected with ultrahigh spectral sensitivity and a rapid temporal resolution of 880 μs.

摘要

基于这一概念,我们利用金属 Au 固态膜来迁移和快速检测用 589 染料分子功能化的单个 Au 纳米粒子 (NPs),并使用表面增强共振拉曼光谱 (SERRS) 进行检测。我们表明,由于 Au 金属纳米孔表面与 NP 之间的等离子体耦合,当探测与 NP 表面结合的分析物分子时,信号强度会增强。虽然不是单分子,但这种纳米孔传感方案受益于 SERRS 提供分析物丰富振动信息的能力,从而改进了当前基于纳米孔的电和光检测技术。我们表明,可以以超高光谱灵敏度和 880 μs 的快速时间分辨率检测到分析物的全振动光谱。

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