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Updated: Jul 22, 2026

Fluorescence detection methods for microfluidic droplet platforms
Published on: December 10, 2011
Automatic Image Processing-Assisted Ratiometric Afterglow Sensor Array for the Discrimination and Detection of
Dongbo Chen1,2, Minhui Niu3, Xintong Li1
1Hebei Technology Innovation Center for Energy Conversion Materials and Devices, Hebei Key Laboratory of Inorganic Nanomaterials, Engineering Research Center of Thin Film Solar Cell Materials and Devices, College of Chemistry and Material Science, Hebei Normal University, No. 20Rd. East of 2nd Ring South, Yuhua District, Shijiazhuang, Hebei 050024, P. R. China.
Abstract:
Simultaneous detection and discrimination of fluoroquinolone (FQ) subtypes are crucial yet challenging due to their high similarity in molecular structure and optical properties. In this work, we propose a ratiometric afterglow sensor array for the visual detection and discrimination of five FQ subtypes via a universal host-guest doping strategy. Boric acid was used as a universal host to boost the afterglow emission intensities of blue emissive FQs, green emissive 1-naphthaleneboronic acid, and red emissive 1-pyrenylboronic acid by creating a rigid matrix and cross-linked networks. After combination of afterglow detection with automatic image processing, FQs could be facially detected without complicated instruments. By conducting pattern recognition analysis on the disparities and similarities in the afterglow intensities of these FQs, the detection and discrimination of five FQs were realized, as low as 0.27 ng/mL. In addition, the sensor array exhibited excellent performance in detecting and discriminating mixed FQs in commercial meat samples. This study provided a straightforward approach for the detection and discrimination of antibiotics, holding great promise for applications in environmental monitoring and food safety assessment.

