Liu_2022_Nanomaterials.(Basel)_12_

Reference

Title : Highly Selective Detection of Paraoxon in Food Based on the Platform of Cu Nanocluster\/MnO(2) Nanosheets - Liu_2022_Nanomaterials.(Basel)_12_
Author(s) : Liu S , Zhang P , Miao Y , Li C , Shi YE , Liu J , Lv YK , Wang Z
Ref : Nanomaterials (Basel) , 12 : , 2022
Abstract :

Selective and sensitive identification of paraoxon residue in agricultural products is greatly significant for food safety but remains a challenging task. Herein, a detection platform was developed by integrating Cu nanoclusters (Cu NCs) with MnO(2) nanosheets, where the fluorescence of Cu NCs was effectively quenched. Upon introducing butyrylcholinesterase and butyrylcholine into the system, their hydrolysate, thiocholine, leads to the decomposition of the platform through a reaction between the MnO(2) nanosheets and thiol groups on thiocholine. The electron-rich groups on thiocholine can further promote the fluorescence intensity of Cu NCs through host-guest interactions. Adding paraoxon results in the failure of fluorescence recovery and further promotion, which could be utilized for the quantitative detection of paraoxon, and a limit of detection as low as 0.22 ng/mL can be achieved. The detection platform shows strong tolerance to common interference species, which endows its applications for the detection of paraoxon in vegetables and fruit. These presented results not only open a new door for the functionalization of metal nanoclusters but also offer an inspiring strategy for analytic techniques in nanomedicine and environmental science.

PubMedSearch : Liu_2022_Nanomaterials.(Basel)_12_
PubMedID: 35564138

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Citations formats

Liu S, Zhang P, Miao Y, Li C, Shi YE, Liu J, Lv YK, Wang Z (2022)
Highly Selective Detection of Paraoxon in Food Based on the Platform of Cu Nanocluster\/MnO(2) Nanosheets
Nanomaterials (Basel) 12 :

Liu S, Zhang P, Miao Y, Li C, Shi YE, Liu J, Lv YK, Wang Z (2022)
Nanomaterials (Basel) 12 :