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Updated: Jun 23, 2026

Fabrication of a Dipole-assisted Solid Phase Extraction Microchip for Trace Metal Analysis in Water Samples
Published on: August 7, 2016
Detection of Hg2+ in environmental water conditions by using a reusable SERS-based microfluidic chip with a high
Yansheng Liu1, Mengqi Wang2, Guofu Wang3
1School of Electronic Engineering, Guangxi University of Science and Technology, No. 2, Wenchang Road, Liuzhou City 545006 Guangxi, China; Guangxi Key Laboratory of Multidimensional Information Fusion for Intelligent Vehicles, No. 2, Wenchang Road, Liuzhou City 545006 Guangxi, China; Guangxi Colleges and Universities Key Laboratory of Microwave Communication and Micro-Nano Photoelectric Technology, No. 2, Wenchang Road, Liuzhou City 545006 Guangxi, China.
Abstract:
This work reported a surface-enhanced Raman spectroscopy (SERS)-based microfluidic chip that detects mercury ions (Hg2+) in water with high sensitivity and good reproducibility. Silver nanoparticles (AgNPs) are easily fabricated on a Si substrate using a thin, thermally treated Ag film. Cy3 functionalized single-stranded DNA (Cy3-ssDNA) serves as the probe, which is immobilized on the AgNPs (Cy3-ssDNA/AgNPs), generating a SERS-based sensing surface. Due to the strong interaction between thymine (T) bases and Hg2+, in the presence of these ions, the ssDNA forms a T-Hg2+-T hairpin structure, which enhances the SERS signal. This method exhibits a limit of detection (LOD) of 1 × 10-13 M. Furthermore, the proposed SERS chip demonstrates exceptional selectivity for mercury ions, as well as good reusability. The reusability of the SERS microfluidic chip was evaluated using the L-cysteine, which has a stronger affinity than T for Hg2+. By applying L-cysteine, the chip can be reused 10 times for the detection of Hg2+ at concentrations as low as 1 × 10-8 M. The method proposed in this study shows good sensitivity and holds good potential for application in the detection of Hg2+.
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