Chen Mingming, Lai Xiaojing, Su Bihang, Jiang Xiancai, Xu Jinhua, Fu Fengfu, Lin Zhenyu, Dong Yongqing
MOE Key Laboratory for Analytical Science of Food Safety and Biology, Fujian Provincial Key Laboratory of Analysis and Detection Technology for Food Safety, College of Chemistry, Fuzhou University, Fuzhou, 350108, China.
College of Chemical Engineering, Fuzhou University, Fuzhou, 350108, China.
Talanta. 2024 Sep 1;277:126309. doi: 10.1016/j.talanta.2024.126309. Epub 2024 May 22.
Tebuconazole is one of the most commonly used fungicides in agricultural production, that has the merits of highly effectiveness, broad spectrum and systemic function. Excessive tebuconazole may pose a great threat to human and animal health. Traditional detection techniques for tebuconazole usually have limitations such as expensive equipment, poor antibody stability, and time-consuming procedures. Herein, a sensitive sensor is developed for the rapid detection of tebuconazole based on hydrogel surface-enhanced Raman scattering (SERS) chips. Aggregated Ag nanoparticles (a-AgNPs) with tunable localized surface plasmon resonance (LSPR) wavelength are in-situ synthesized in polyvinyl alcohol (PVA) solution for preparing hydrogel SERS chips. Three hydrogel SERS chips are obtained to match the three commonly used laser wavelengths. On the basis, a match laser wavelength is selected according to the energy levels of tebuconazole and the Fermi level of a-AgNPs to gain a strong chemical enhancement. At the same time, the chip with a corresponding LSPR wavelength to the laser is applied to obtain a strong electromagnetic enhancement. Thus, highly sensitive SERS signal of tebuconazole is obtained. Furthermore, the obtained hydrogel SERS chips have good repeatability, outstanding reproducibility and strong anti-interference ability, and show outstanding reliability in practical applications. As a result, the SERS chips offer a reliable and convenient platform for the quick detection of tebuconazole in foods. The detection limit is as low as 1 ppb, and the recoveries is distributed in the range of 94.66-106.70 %. This work would promote greatly the application of SERS in small molecule detection.
戊唑醇是农业生产中最常用的杀菌剂之一,具有高效、广谱和内吸性等优点。过量的戊唑醇可能对人类和动物健康构成重大威胁。传统的戊唑醇检测技术通常存在设备昂贵、抗体稳定性差和操作耗时等局限性。在此,基于水凝胶表面增强拉曼散射(SERS)芯片开发了一种用于快速检测戊唑醇的灵敏传感器。在聚乙烯醇(PVA)溶液中原位合成具有可调谐局域表面等离子体共振(LSPR)波长的聚集银纳米颗粒(a-AgNPs),用于制备水凝胶SERS芯片。获得了三种水凝胶SERS芯片以匹配三种常用的激光波长。在此基础上,根据戊唑醇的能级和a-AgNPs的费米能级选择匹配的激光波长,以获得强烈的化学增强。同时,应用与激光具有相应LSPR波长的芯片以获得强烈的电磁增强。从而获得了戊唑醇的高灵敏SERS信号。此外,所制备的水凝胶SERS芯片具有良好的重复性、出色的再现性和强大的抗干扰能力,在实际应用中表现出出色的可靠性。结果,该SERS芯片为食品中戊唑醇的快速检测提供了一个可靠且便捷的平台。检测限低至1 ppb,回收率分布在94.66-106.70%范围内。这项工作将极大地促进SERS在小分子检测中的应用。