双功能
分子印迹聚合物
化学
纳米技术
检出限
软件可移植性
普鲁士蓝
炸薯条
聚合物
线性范围
分子印迹
纳米颗粒
实验室晶片
信号(编程语言)
电解质
光刻
食品安全
膜
作者
Mingxuan Jia,Kehui Wei,Huadong Heng,T. Wang,Lianxi Pu,Yinmin Min,Jin Song Shen,Lijun Ding,Kun Wang
标识
DOI:10.1021/acs.analchem.5c07544
摘要
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 TiO2/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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