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Carbon Quantum Dots Encapsulated Molecularly Imprinted Fluorescence Quenching Particles for Sensitive Detection of Zearalenone in Corn Sample

机译:碳量子点包裹分子印迹荧光猝灭颗粒用于玉米样品中玉米赤霉烯酮的灵敏检测

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摘要

An eco-friendly and efficient one-step approach for the synthesis of carbon quantum dots (CDs) that encapsulated molecularly imprinted fluorescence quenching particles (MIFQP) and their application for the determination of zearalenone (ZEA) in a cereal sample are described in this study. CDs with high luminescence were first synthesized, and then encapsulated in the silica-based matrix through a non-hydrolytic sol-gel process. The resulting ZEA-imprinted particles exhibited not only an excellent specific molecular recognition of ZEA, but also good photostability and obvious template binding-induced fluorescence quenching. Under the optimized conditions, the fluorescence intensity of MIFQP was inversely proportional to the concentration of ZEA. By validation, the detection range of these fluorescence quenching materials for ZEA was between 0.02 and 1.0 mg L−1, and the detection limit was 0.02 mg L−1 (S/N = 3). Finally, the MIFQP sensor was successfully applied for ZEA determination in corn with recoveries from 78% to 105% and the relative standard deviation (RSD %) was lower than 20%, which suggests its potential in actual applications.
机译:这项研究描述了一种环保,高效的一步法合成包裹分子印迹荧光猝灭颗粒(MIFQP)的碳量子点(CD)及其在谷物样品中玉米赤霉烯酮(ZEA)测定中的应用。首先合成高发光CD,然后通过非水解溶胶-凝胶工艺将其封装在基于二氧化硅的基质中。所得的ZEA印迹颗粒不仅显示出对ZEA的出色的特异性分子识别,而且还显示出良好的光稳定性和明显的模板结合诱导的荧光猝灭。在最佳条件下,MIFQP的荧光强度与ZEA浓度成反比。经验证,这些荧光猝灭材料对ZEA的检出范围为0.02至1.0 mg L -1 ,检出限为0.02 mg L -1 (S / N = 3)。最后,MIFQP传感器成功应用于玉米中的ZEA测定,回收率从78%到105%,相对标准偏差(RSD%)低于20%,这表明其在实际应用中具有潜力。

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