论文标题
超敏感的表面增强拉曼光谱检测通过自润滑的滴蒸发从多孔银上颗粒检测
Ultrasensitive Surface-Enhanced Raman Spectroscopy Detection by Porous Silver Supraparticles from Self-Lubricating Drop Evaporation
论文作者
论文摘要
这项工作证明了一种基于含有银上颗粒的自润滑液滴的蒸发的表面增强拉曼光谱(SERS)检测的原始和超敏化方法。开发的方法检测出极低的分析物,该分析物富集并集中在由滴蒸发形成的紧凑型上皮的敏感SERS位点上。对于模型疏水化合物若丹明6G(R6G),可实现10^-16 m的检测极限。 R6G浓度的定量分析是从10^-5到10^-11M获得的。此外,对于水三氯生中的模型微型污染物,通过使用微层样品溶液来实现10^-6 m的检测极限。在这种方法中,SERS检测的强度对于滴在液滴中的分散性方面具有鲁棒性,但在干燥时间更长的时间后变得更强。超敏感的检测机制是在自润滑下降和热点产生浓度,提取和吸收分析物的顺序过程,以加强SERS信号。超敏化SER检测中样品制备的新方法可以应用于在环境监测,食品安全和生物医学诊断等领域的化学和生物学特征。
This work demonstrates an original and ultrasensitive approach for surface-enhanced Raman spectroscopy (SERS) detection based on evaporation of self-lubricating drops containing silver supraparticles. The developed method detects an extremely low concentration of analyte that is enriched and concentrated on sensitive SERS sites of the compact supraparticles formed from drop evaporation. A low limit of detection of 10^-16 M is achieved for a model hydrophobic compound rhodamine 6G (R6G). The quantitative analysis of R6G concentration is obtained from 10^-5 to 10^-11 M. In addition, for a model micro-pollutant in water triclosan, the detection limit of 10^-6 M is achieved by using microliter sample solutions. The intensity of SERS detection in this approach is robust to the dispersity of the nanoparticles in the drop but became stronger after a longer drying time. The ultrasensitive detection mechanism is the sequential process of concentration, extraction, and absorption of the analyte during evaporation of self-lubrication drop and hot spot generation for intensification of SERS signals. This novel approach for sample preparation in ultrasensitive SERS detection can be applied to the detection of chemical and biological signatures in areas such as environment monitoring, food safety, and biomedical diagnostics.