费斯特共振能量转移
检出限
碳量子点
化学
量子点
荧光
复合数
能量转移
气相色谱法
纳米技术
色谱法
污染
碳纤维
毒品检测
杀虫剂
人类健康
接受者
环境化学
选择性
卟啉
低能
环境科学
共振感应耦合
量子
农药残留
爆炸物探测
作者
Youjia Tian,Zhijie Wang,Mengyao Li,Xianwei Luo,Mingxin Yang,Jingru Yang,Bingbing Peng,Jinhong Jiang,Minjie Li,Jia Liu,Dingyu Hu,Juan Li
标识
DOI:10.1016/j.jfca.2026.108901
摘要
Organophosphorus pesticides (OPPs) posed significant risks to both ecological and human health due to their widespread use and toxicity. Traditional detection methods for OPPs are complex and require expensive equipment. In this study, a novel fluorescence-based detection strategy is proposed, using serine-based carbon quantum dots (CQDs) encapsulated in a Zr-based porphyrin metal-organic framework (MOF). This composite material exploits the triggering of fluorescence resonance energy transfer (FRET) between the CQDs and Zr-MOF for selective detection of OPPs. The FRET efficiency of this system is 72.9%, enabling it to have interference-resistant detection capabilities. The detection limits are approaching the detection limit of gas chromatography (~5 µg/L). The probe is applicable for environmental monitoring and food safety testing, offering a promising alternative for rapid on-site detection of OPPs without relying on enzymes. • An enzyme-free FRET probe for specific OPP detection. • Carbon quantum dots modified with serine were encapsulated into MOFs to form probes. • Efficient energy transfer enables sensitive OPP detection, approaching GC levels. • It allows rapid on-site OPP monitoring in real samples.
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