分子印迹聚合物
检出限
分子印迹
荧光
纳米颗粒
多孔性
聚合物
化学
纳米技术
化学工程
材料科学
有机化学
色谱法
选择性
复合材料
物理
工程类
量子力学
催化作用
作者
Longhua Xu,Mingfei Pan,Guozhen Fang,Shuo Wang
标识
DOI:10.1016/j.snb.2019.01.156
摘要
A facile and efficient one-pot approach for the synthesis of carbon dots embedded metal-organic [email protected] imprinted polymer nanoparticles ([email protected]@MIP), which can be used for highly selective and sensitive optosensing of quercetin (QCT), is reported herein for the first time. Metal-organic frameworks (MOFs) with high specific surface area and porosity were first prepared via a room-temperature reaction and used as a matrix to construct MOF-based sensor. Then, highly blue luminescent carbon dots (CDs) were introduced to act as signal transducer that can sense the bonding interactions between the developed sensor and the target molecules and further transduce them to the detectable fluorescence signals. Final, through a surface molecular imprinting process, the resulting [email protected]@MIP was obtained. The [email protected]@MIP not only exhibited higher selectivity and sensitivity toward target molecular compared to carbon dots embedded metal-organic framework @non-imprinted polymer ([email protected]@NIP), but also showed faster reaction rate than CDs-embedded molecularly imprinted polymer ([email protected]) derived from the introduction of porous MOF and the optical detection. This proposed sensor was employed to sense trace QCT, and its fluorescence presented a well linear decline with the increasing concentration of QCT from 0 μM to 50.0 μM with a limit of detection of 2.9 nM (S/N = 3), and the precision for eleven replicate detections of 0.5 μM QCT was 1.9%. This developed [email protected]@MIP sensor was also used to determine QCT content in real Ginkgo biloba extract capsules with satisfactory performance, and the results were correlated well with those obtained using high performance liquid chromatography.
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