Fabrication of bifunctional gold nanoparticles for self-calibration UV-Vis/surface-enhanced Raman spectroscopy dual-mode analysis of Hg2+ in milk.
Jinxin Chen, Zhihong Wang, Miao Ding, Ying Gu, Kun Ge, Xuejing Fan
Food chemistry
Abstract
Multimodal optical detection are good candidates in accuracy improvement in complex food detection, without sacrificing rapidity and sensitivity. Herein, bifunctional gold nanoparticles (AuNPs/4-MBA/Cy/T) based on step-by-step modification of 4-mercaptobenzoic acid, cysteamine, and thymine-1-acetic acid were fabricated for self-calibration ultraviolet-visible spectroscopy (UV-Vis)/surface-enhanced Raman spectroscopy (SERS) dual-mode detection of mercury ions (Hg2+) in milks. The bifunctional UV-Vis and SERS analysis can be attributed to the localized surface plasmon resonance (LSPR) properties of AuNPs. The stable aggregation structure of AuNPs/4-MBA/Cy/T-Hg2+ can be formed in the presence of Hg2+ based on specific recognition of thymine, simultaneously decreasing UV-Vis signals and increasing SERS signals, also verified by theoretical simulations. Under the optimum conditions, the AuNPs/4-MBA/Cy/T was applied to establish UV-Vis/SERS dual-mode method for Hg2+ detection in various milk samples with satisfied analytical performance including rapidity, sensitivity, specificity, accuracy, and repeatability. It offers a novel strategy in developing of self-calibration dual-mode detection for food contaminants analysis.