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在单分子尺度上进行大规模热点工程实现定量 SERS。

Large-Scale Hot Spot Engineering for Quantitative SERS at the Single-Molecule Scale.

机构信息

Department of Physics, National Tsing-Hua University , Hsinchu 30013, Taiwan.

Center for Condensed Matter Sciences, National Taiwan University , Taipei 10617, Taiwan.

出版信息

J Am Chem Soc. 2015 Oct 28;137(42):13698-705. doi: 10.1021/jacs.5b09111. Epub 2015 Oct 15.

Abstract

Quantitative surface enhanced Raman spectroscopy (SERS) requires precise control of Raman enhancement factor and detection uniformity across the SERS substrate. Here, we show that alkanethiolate ligand-regulated silver (Ag) nanoparticle films can be used to achieve quantitative SERS measurements down to the single-molecule level. The two-dimensional hexagonal close-packed superlattices of Ag nanoparticles formed in these films allow for SERS detection over a large area with excellent uniformity and high Raman enhancement factor. In particular, the SERS signal from the thiolate ligands on Ag nanoparticle surfaces can be utilized as a stable internal calibration standard for reproducible quantitative measurements. We demonstrate the capability of quantitative SERS by measuring the areal densities of crystal violet molecules embedded in an ultrathin spin-on-glass detection "hot zone", which is a planar and uniformly enhanced region several nanometers above the Ag nanoparticles. The Raman measurement results exhibit a linear response over a wide dynamic range of analyte concentration.

摘要

定量表面增强拉曼光谱(SERS)需要精确控制拉曼增强因子和 SERS 衬底上的检测均匀性。在这里,我们展示了烷硫醇配体调控的银(Ag)纳米粒子薄膜可用于实现低至单分子水平的定量 SERS 测量。这些薄膜中形成的二维六方密堆积超晶格 Ag 纳米粒子允许在大区域内进行具有优异均匀性和高拉曼增强因子的 SERS 检测。特别是,Ag 纳米粒子表面上的硫醇配体的 SERS 信号可用作可重复定量测量的稳定内部校准标准。我们通过测量嵌入在超薄旋涂玻璃检测“热点”中的结晶紫分子的面积密度来证明定量 SERS 的能力,该热点是 Ag 纳米粒子上方数纳米处的平面且均匀增强的区域。拉曼测量结果在宽的分析物浓度动态范围内表现出线性响应。

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