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1.
Ecotoxicol Environ Saf ; 284: 116986, 2024 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-39241609

RESUMO

A new and highly sensitive voltammetric technique was described in this study for the concurrent detection of endocrine disruptors bisphenol A (BPA) and bisphenol AF (BPAF) based on carbon nanocages (CNCs) and copper oxide nanochains (CuONCs). The CNCs was prepared by the solvothermal method and characterized using various techniques. Utilizing the nanocomposite of CNCs and CuONCs, the voltammetric sensor demonstrated outstanding performance in detecting BPA and BPAF simultaneously with distinct oxidation peaks and increased current peaks. The voltammetric signals have linear relationships with the two bisphenols ranging from 0.500 µM to 100 µM with a detection limit of 0.16 µM for BPA and 0.14 µM for BPAF. The newly designed sensor showed reliable consistency, long-term durability and anti-interference ability, and performed well in analyzing real water samples, indicating great potential for environmental monitoring.


Assuntos
Compostos Benzidrílicos , Carbono , Cobre , Técnicas Eletroquímicas , Disruptores Endócrinos , Fenóis , Poluentes Químicos da Água , Fenóis/análise , Fenóis/química , Compostos Benzidrílicos/análise , Compostos Benzidrílicos/química , Cobre/análise , Cobre/química , Disruptores Endócrinos/análise , Disruptores Endócrinos/química , Poluentes Químicos da Água/análise , Poluentes Químicos da Água/química , Carbono/química , Técnicas Eletroquímicas/métodos , Monitoramento Ambiental/métodos , Limite de Detecção , Nanocompostos/química , Fluorocarbonos
2.
RSC Adv ; 14(20): 14194-14201, 2024 Apr 25.
Artigo em Inglês | MEDLINE | ID: mdl-38686285

RESUMO

Two CuO nanostructures, namely, nanospheres (CuONSs) and nanochains (CuONCs) with different shapes but similar diameters, were synthesized and characterized. With these two nanomaterials as electrode modifiers, a systematic comparative study was conducted to examine their electrochemical sensing of catechol (CT) using a dual-working electrode system. The results suggest that for CuONS- and CuONC-modified glassy carbon electrodes, the electrode process for the CT redox is diffusion-controlled, and the modification amount and electrolyte pH have a similar effect on the response. However, the CuONCs showed a higher peak current and lower peak potential, as well as a lower detection limit for the electrochemical oxidation of CT. This is explained by the lower charge transfer impedance and higher electroactive surface area of the CuONCs. Notably, an unexpected peak appeared in the cyclic voltammograms when the pH was <4 for the CuONCs and <3 for the CuONSs. For this phenomenon, UV-Vis spectra, zeta potential, and size distribution experiments demonstrated changes in the two CuO nanostructures at lower pH, illustrating that CuONSs can tolerate a higher pH as compared to CuONCs. The multiple comparisons between the two nanomaterials presented here can provide references for the selection of electrochemical sensing materials.

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