Hubei Collaborative Innovation Center for Advanced Organic Chemical Materials, Ministry-of-Education Key Laboratory for the Synthesis and Application of Organic Functional Molecules, College of Chemistry and Chemical Engineering, Hubei University, Wuhan, 430062, China.
School of Public Health, North China University of Science and Technology, Tangshan, 063210, Hebei, China.
Mikrochim Acta. 2022 Feb 21;189(3):113. doi: 10.1007/s00604-022-05224-6.
A novel colorimetric and ratiometric fluorescence sensor has been established based on boron carbon oxynitride quantum dots (BCNO QDs) and Ca for the detection of doxycycline (DOX). BCNO QDs were synthesized by microwave-assisted method with boric acid and ethylenediamine. The fluorescence of BCNO QDs at 425 nm was quenched due to the electrostatic interaction and inner filter effect with doxycycline. Meanwhile, doxycycline was combined with Ca to form a fluorescence complex, which generated a new fluorescence peak at 520 nm. The fluorescence intensity ratio (F/F) has a good linear relationship with doxycycline concentration, and the detection limit is 25 nM. Moreover, the fluorescence of the reaction solution showed a concentration-dependent visual color change from blue to green. In order to facilitate further application, a portable fluorescent test paper which is easy to store was prepared. The RGB values of the reaction solution and corresponding test paper were identified by smartphone, and the visual detection of doxycycline was performed by digital image colorimetric analysis. The application of smartphone and fluorescent test paper can effectively shorten the detection time and simplified the operation, providing an effective scheme for quantitative detection of doxycycline in actual samples. Overall, this work provides a method for the detection of doxycycline and shows that the BCNO QDs have great potential application in food safety.
建立了一种基于氮化硼碳量子点(BCNO QDs)和钙的新型比色和比率荧光传感器,用于检测强力霉素(DOX)。BCNO QDs 通过微波辅助法用硼酸和乙二胺合成。由于与强力霉素的静电相互作用和内滤效应,BCNO QDs 在 425nm 处的荧光被猝灭。同时,强力霉素与 Ca 结合形成荧光配合物,在 520nm 处产生新的荧光峰。荧光强度比(F/F)与强力霉素浓度呈良好的线性关系,检测限为 25nM。此外,反应溶液的荧光呈现出从蓝色到绿色的浓度依赖的可视化颜色变化。为了便于进一步应用,制备了一种便于储存的便携式荧光试纸。智能手机识别反应溶液和相应试纸的 RGB 值,并通过数字图像比色分析进行强力霉素的可视化检测。智能手机和荧光试纸的应用可以有效缩短检测时间并简化操作,为实际样品中强力霉素的定量检测提供了有效的方案。总的来说,这项工作为强力霉素的检测提供了一种方法,并表明 BCNO QDs 在食品安全中有很大的潜在应用。