Strobbia Pietro, Mayer Adam, Cullum Brian M
Department of Chemistry and Biochemistry, University of Maryland Baltimore County, Baltimore, MD, USA.
Appl Spectrosc. 2017 Feb;71(2):279-287. doi: 10.1177/0003702816662881. Epub 2016 Oct 1.
Surface-enhanced Raman spectroscopy (SERS) sensors offer many advantages for chemical analyses, including the ability to provide chemical specific information and multiplexed detection capability at specific locations. However, to have operative SERS sensors for probing microenvironments, probes with high signal enhancement and reproducibility are necessary. To this end, dynamic enhancement of SERS (i.e., in-situ amplification of signal-to-noise and signal-to-background ratios) from individual probes has been explored. In this paper, we characterize the use of optical tweezers to amplify SERS signals as well as suppress background signals via trapping of individual SERS active probes. This amplification is achieved through a steady presence of a single "hot" particle in the focus of the excitation laser. In addition to increases in signal and concomitant decreases in non-SERS backgrounds, optical trapping results in an eightfold increase in the stability of the signal as well. This enhancement strategy was demonstrated using both single and multilayered SERS sub-micron probes, producing combined signal enhancements of 24-fold (beyond the native 10 SERS enhancement) for a three-layered geometry. The ability to dynamically control the enhancement offers the possibility to develop SERS-based sensors and probes with tailored sensitivities. In addition, since this trapping enhancement can be used to observe individual probes with low laser fluences, it could offer particular interest in probing the composition of microenvironments not amenable to tip-enhanced Raman spectroscopy or other scanning probe methods (e.g., intracellular analyses, etc.).
表面增强拉曼光谱(SERS)传感器在化学分析方面具有诸多优势,包括能够提供特定化学信息以及在特定位置进行多重检测的能力。然而,要拥有用于探测微环境的有效SERS传感器,具有高信号增强和可重复性的探针是必要的。为此,人们探索了单个探针的SERS动态增强(即信噪比和信号与背景比的原位放大)。在本文中,我们描述了利用光镊来放大SERS信号以及通过捕获单个SERS活性探针来抑制背景信号的方法。这种放大是通过在激发激光焦点处稳定存在单个“热点”粒子来实现的。除了信号增强和非SERS背景的相应降低外,光镊还使信号稳定性提高了八倍。使用单层和多层SERS亚微米探针都证明了这种增强策略,对于三层结构产生了24倍的组合信号增强(超过了原生的10倍SERS增强)。动态控制增强的能力为开发具有定制灵敏度的基于SERS的传感器和探针提供了可能性。此外,由于这种捕获增强可用于在低激光通量下观察单个探针,因此在探测不适用于尖端增强拉曼光谱或其他扫描探针方法的微环境组成(例如细胞内分析等)方面可能会引起特别的兴趣。