Opt Express. 2022 May 9;30(10):15846-15857. doi: 10.1364/OE.454409.
The use of surface-enhanced Raman scattering (SERS) spectroscopy for the detection of substances in non-volatile systems, such as edible oil and biological cells, is an important issue in the fields of food safety and biomedicine. However, traditional dry-state SERS detection with planar SERS substrates is not suitable for highly sensitive and rapid SERS detection in non-volatile liquid-phase systems. In this paper, we take contaminant in edible oil as an example and propose an in situ SERS detection method for non-volatile complex liquid-phase systems with high-performance optical fiber SERS probes. Au-nanorod clusters are successfully prepared on optical fiber facet by a laboratory-developed laser-induced dynamic dip-coating method, and relatively high detection sensitivity (LOD of 2.4 × 10 mol/L for Sudan red and 3.6 × 10 mol/L for thiram in sunflower oil) and good reproducibility (RSD less than 10%) are achieved with a portable Raman spectrometer and short spectral integration time of 10 s even in complex edible oil systems. Additionally, the recovery rate experiment indicates the reliability and capability of this method for quantitative detection applications. This work provides a new insight for highly sensitive and rapid SERS detection in non-volatile liquid-phase systems with optical fiber SERS probes and may find important practical applications in food safety and biomedicine.
表面增强拉曼散射(SERS)光谱学在非挥发性系统(如食用油和生物细胞)中物质检测方面的应用是食品安全和生物医学领域的一个重要问题。然而,传统的平面 SERS 基底干式 SERS 检测不适合非挥发性液相系统中高灵敏度和快速的 SERS 检测。本文以食用油中的污染物为例,提出了一种具有高性能光纤 SERS 探针的非挥发性复杂液相系统的原位 SERS 检测方法。通过实验室开发的激光诱导动态浸涂方法,成功地在光纤端面上制备了 Au 纳米棒簇,即使在复杂的食用油系统中,使用便携式拉曼光谱仪和 10 秒的短光谱积分时间,也可以实现较高的检测灵敏度(苏丹红的 LOD 为 2.4×10-7mol/L,葵花籽油中 thiram 的 LOD 为 3.6×10-7mol/L)和良好的重现性(RSD 小于 10%)。此外,回收率实验表明,该方法在非挥发性液相系统中具有定量检测应用的可靠性和能力。这项工作为光纤 SERS 探针在非挥发性液相系统中进行高灵敏度和快速 SERS 检测提供了新的思路,并可能在食品安全和生物医学领域找到重要的实际应用。