首页> 外文期刊>Beilstein Journal of Nanotechnology >Correlation of surface-enhanced Raman scattering (SERS) with the surface density of gold nanoparticles: evaluation of the critical number of SERS tags for a detectable signal
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Correlation of surface-enhanced Raman scattering (SERS) with the surface density of gold nanoparticles: evaluation of the critical number of SERS tags for a detectable signal

机译:表面增强拉曼散射(SERS)与金纳米颗粒的表面密度的相关性:评估可检测信号的SERS标签的临界数量

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The use of plasmonic nanotags based on the surface-enhanced Raman scattering (SERS) effect is highly promising for several applications in analytical chemistry, biotechnological assays and nanomedicine. To this end, a crucial parameter is the minimum number of SERS tags that allows for the collection of intense Raman signals under real operating conditions. Here, SERS Au nanotags (AuNTs) based on clustered gold nanoparticles are deposited on a substrate and analyzed in the same region using Raman spectroscopy and transmission electron microscopy. In this way, the Raman spectra and the surface density of the SERS tags are correlated directly, showing that 1 tag/μmsup2/sup is enough to generate an intense signal above the noise level at 633 nm with an excitation power of only 0.65 mW and an acquisition time of just 1 s with a 50× objective. The AuNT density can be even lower than 1 tag/μmsup2/sup when the acquisition time is extended to 10 s, but must be increased to 3 tags/μmsup2/sup when a 20× objective is employed under the same excitation conditions. In addition, in order to observe a linear response, it was found that 10 SERS AuNTs inside the probed area are required. These findings indicate that a better signal-to-noise ratio requires high-magnification optics, while linearity versus tag number can be improved by using low-magnification optics or a high tag density. In general the suitability of plasmonic SERS labels for ultrasensitive analytical and biomedical applications is evident.
机译:基于表面增强拉曼散射(SERS)效应的等离激元纳米标签的应用在分析化学,生物技术测定和纳米医学中的多种应用中非常有前途。为此,一个关键参数是SERS标签的最小数量,该标签允许在实际操作条件下收集强拉曼信号。在此,将基于簇状金纳米颗粒的SERS Au纳米标签(AuNT)沉积在基材上,并使用拉曼光谱和透射电子显微镜在同一区域进行分析。这样,拉曼光谱和SERS标签的表面密度直接相关,表明1 tag /μm 2 足以在激发下产生高于633 nm噪声水平的强信号。功率仅为0.65 mW,50倍物镜的采集时间仅为1 s。当采集时间延长到10 s时,AuNT密度甚至可以低于1个标签/μm 2 ,但是当20倍时,必须将其增加到3个标签/μm 2 ×在相同的激励条件下使用物镜。另外,为了观察线性响应,发现在被探测区域内需要10个SERS AuNT。这些发现表明,更好的信噪比需要高倍率的光学元件,而线性度与标签数量的关系可以通过使用低倍率的光学元件或高标签密度来改善。通常,等离子体SERS标签对于超灵敏分析和生物医学应用的适用性是显而易见的。

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