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◆ Analytical Chemistry2026-01-02· Bifunctional

Device Simplification: Example of the Application of a Bifunctional Molecularly Imprinted Polymer Membrane in a Visual Photoelectrochromic Chip

Mingxuan Jia, Kehui Wei, Huadong Heng, T. Wang, Lianxi Pu, Yinmin Min, Jin Song Shen, Lijun Ding, Kun Wang

原始摘要(英文原文)· Original abstract
Considering that mycotoxin contamination, especially ochratoxin A (OTA), in food substrates poses a significant threat to human health, there is an urgent need for efficient on-site detection strategies to ensure food safety and facilitate a timely response. This study developed a novel and reusable visual point-of-care testing (POCT) device for on-site detection of OTA by integrating a photoelectrochromic sensing system with a microfabricated electrolytic cell fabricated via 3D printing. This streamlined, instrument-free configuration enhances portability and simplifies device fabrication. The signal generation region in this all-in-one chip was created through the electropolymerization of bifunctional molecularly imprinted polymers (MIPs) on the TiO 2 /CdS substrate, while the signal output region employed a Prussian blue film that generated a unique colorimetric response readable by smartphone. The inclusion of bifunctional MIPs markedly improved the chip’s photoresponse performance (up to 8.4-fold) and its selective recognition of OTA, achieving a broad linear response range from 0.5 to 120 ng/mL, with an impressive detection limit as low as 0.18 ng/mL. This integrated photoelectrochromic POCT platform offers rapid, intuitive, and stable detection, showing strong potential for next-generation in applications related to food safety monitoring and environmental analysis.
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Device Simplification: Example of the Application of a Bifunctional Molecularly Imprinted Polymer Membrane in a Visual Photoelectrochromic Chip — 科研速览 Science Skim