Tian_2024_J.Hazard.Mater_469_133847

Reference

Title : Facile and selective recognition of sulfonylurea pesticides based on the multienzyme-like activities enhancement of nanozymes combining sensor array - Tian_2024_J.Hazard.Mater_469_133847
Author(s) : Tian T , Song D , Zhang L , Huang H , Li Y
Ref : J Hazard Mater , 469 :133847 , 2024
Abstract :

Traditional identification methods based on cholinesterase inhibition are limited to recognizing organic phosphorus and carbamate esters, and their response to sulfonylurea pesticides is weak. Residual sulfonylurea pesticides can pose a threat to human health. So, it is very important to develop an effective, rapid and portable method for sulfonylurea pesticides detection. Herein, we first found that sulfonylurea pesticides have activity-enhancing effects on copper-based nanozymes, and then combined them with the array technology to construct a six-channel sensing array method for selectively identifying sulfonylurea pesticides and detecting total concentration of sulfonylurea pesticides (the limit of detection was 0.03 microg/mL). This method has good selectivity towards sulfonylurea pesticides. In addition, a smartphone-based colorimetric paper sensor analysis method was developed to achieve the on-site detection of the total concentration of sulfonylurea pesticides. And this array can also be used for individual differentiation (1-100 microg/mL). Our work not only investigates the specific responses of copper-based nanozymes to sulfonylurea pesticides, but also develops a simple method that contributes to directly detect sulfonylurea pesticides at the source of pollution, providing insights for further research on sulfonylurea pesticides detection and filling the gap in pesticide residue studies.

PubMedSearch : Tian_2024_J.Hazard.Mater_469_133847
PubMedID: 38422731

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Citations formats

Tian T, Song D, Zhang L, Huang H, Li Y (2024)
Facile and selective recognition of sulfonylurea pesticides based on the multienzyme-like activities enhancement of nanozymes combining sensor array
J Hazard Mater 469 :133847

Tian T, Song D, Zhang L, Huang H, Li Y (2024)
J Hazard Mater 469 :133847