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Updated: Apr 25, 2026

A Filter-based Surface Enhanced Raman Spectroscopic Assay for Rapid Detection of Chemical Contaminants
Published on: February 19, 2016
Carbon dots-based 'two-pronged' strategy for dual-mode rifampicin sensing: From laboratory to smartphone-assisted
Zhi-Wei Pan1, Ting-Ting Du1, Qiuyu Wu1
1Key Laboratory of Pollution Control Chemistry and Environmental Functional Materials for Qinghai-Tibet Plateau of the National Ethnic Affairs Commission, School of Chemistry and Environment, Southwest Minzu University, Chengdu 610041, China.
Abstract:
Rifampicin (RIF), a critical anti-tuberculosis drug and broad-spectrum antibiotic, poses significant risks to food safety and public health when misused. To ensure efficient monitoring, we developed a 'two-pronged' sensing strategy using yellowish-green fluorescent carbon dots (CDs) for both laboratory analysis and on-site detection. The CDs exhibit excitation-independent photoluminescence and robust photostability. In the laboratory mode, RIF selectively quenches the CDs' fluorescence, achieving a detection limit (LOD) of 0.67 μM (linear range: 325 μM). For on-site application, a paper-based sensor was constructed by depositing CDs onto filter paper. Quantitative analysis of RIF on test strips was realized via a custom-developed WeChat mini-program, 'RIF Tester', which converts colorimetric changes into concentrations under ambient light, achieving high recoveries (88.7% ∼ 110.0%) across a 0-90 μM range. This study marks the first development of a smartphone-integrated, instrument-free paper platform for rapid RIF monitoring, offering a powerful tool for resource-limited settings.
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