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Mikrochim Acta ; 191(9): 552, 2024 08 21.
Article de Anglais | MEDLINE | ID: mdl-39167265

RÉSUMÉ

N-doped hollow carbon spheres (NHCSs) with different shell thicknesses are constructed using various amounts of SiO2 precursor. An interconnected framework with diminished wall thickness ensures an efficient and continuous electron transport which helps to enhance the performance of NHCS. Improvement of the electrocatalytic performance was shown in the determination of antibiotic drug chloramphenicol (CAP) due to the unique hollow thin shell morphology, ample defect sites, accessible surface area, higher surface-to-volume ratio and an synergistic effect. Boosted electrocatalytic activity of 1.5 N-doped HCS (1.5 NHCS) was applied to detect CAP with a linear range and detection limit of 1-1150 µM and 0.098 µM (n = 3), respectively, with superior storage stability and considerable sensitivity. These results suggest that the proposed work can be successfully applied to the determination of CAP in milk and water samples.


Sujet(s)
Antibactériens , Carbone , Chloramphénicol , Techniques électrochimiques , Limite de détection , Lait , Chloramphénicol/analyse , Chloramphénicol/composition chimique , Techniques électrochimiques/méthodes , Techniques électrochimiques/instrumentation , Carbone/composition chimique , Antibactériens/analyse , Lait/composition chimique , Animaux , Polluants chimiques de l'eau/analyse , Électrodes , Azote/composition chimique , Silice/composition chimique
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