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Recent Advances in Electrochemical Determination of Pesticides

Nema prikaza
Autori
Momčilović, Milan Z.
Milićević, Jelena S.
Ranđelović, Marjan S.
Članak u časopisu (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentu
Apstrakt
Widespread usage of pesticides in agricultural practice caused their residues to appear in water and food products intended for human consumption. The potential toxicity of these resources has raised awareness about pesticide tracking in the environment. Development of reliable electrochemical sensors for the on-site determination of pesticide concentrations is envisioned as an alternative to conventional chromatographic methods which are robust, expensive and require skilled work force. Modification of the working electrode surface can result in enhanced electrochemical response towards selected pesticide making such electrode convenient sensor for facile and efficient determination of pesticides in low concentrations. New generation of nanomaterials is applied in electrode modification in order to improve its sensitivity and selectivity. The present review summarizes significant advances in voltammetric detection of pesticides for the period of the past five years. The major focus of... this review is set to the types of carbon and oxide based materials, metal nanoparticles, composites and other materials employed to upgrade standard electrode configurations such as glassy carbon and carbon paste electrodes, boron doped diamond electrodes, screen printed and film electrodes, metal and amalgam, and other kinds of electrodes.

Ključne reči:
Composite / Electrochemistry / Electrode / Modified / Nanomaterial / Sensor
Izvor:
Journal of Nanoscience and Nanotechnology, 2021, 21, 12, 5795-5811

DOI: 10.1166/jnn.2021.19541

ISSN: 1533-4880

PubMed: 34229776

[ Google Scholar ]
URI
https://vinar.vin.bg.ac.rs/handle/123456789/10761
Kolekcije
  • 060 - Laboratorija za hemijsku dinamiku i permanentno obrazovanje
  • 180 - Laboratorija za bioinformatiku i računarsku hemiju
  • Radovi istraživača
Institucija/grupa
Vinča
TY  - JOUR
AU  - Momčilović, Milan Z.
AU  - Milićević, Jelena S.
AU  - Ranđelović, Marjan S.
PY  - 2021
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10761
AB  - Widespread usage of pesticides in agricultural practice caused their residues to appear in water and food products intended for human consumption. The potential toxicity of these resources has raised awareness about pesticide tracking in the environment. Development of reliable electrochemical sensors for the on-site determination of pesticide concentrations is envisioned as an alternative to conventional chromatographic methods which are robust, expensive and require skilled work force. Modification of the working electrode surface can result in enhanced electrochemical response towards selected pesticide making such electrode convenient sensor for facile and efficient determination of pesticides in low concentrations. New generation of nanomaterials is applied in electrode modification in order to improve its sensitivity and selectivity. The present review summarizes significant advances in voltammetric detection of pesticides for the period of the past five years. The major focus of this review is set to the types of carbon and oxide based materials, metal nanoparticles, composites and other materials employed to upgrade standard electrode configurations such as glassy carbon and carbon paste electrodes, boron doped diamond electrodes, screen printed and film electrodes, metal and amalgam, and other kinds of electrodes.
T2  - Journal of Nanoscience and Nanotechnology
T1  - Recent Advances in Electrochemical Determination of Pesticides
VL  - 21
IS  - 12
SP  - 5795
EP  - 5811
DO  - 10.1166/jnn.2021.19541
ER  - 
@article{
author = "Momčilović, Milan Z. and Milićević, Jelena S. and Ranđelović, Marjan S.",
year = "2021",
abstract = "Widespread usage of pesticides in agricultural practice caused their residues to appear in water and food products intended for human consumption. The potential toxicity of these resources has raised awareness about pesticide tracking in the environment. Development of reliable electrochemical sensors for the on-site determination of pesticide concentrations is envisioned as an alternative to conventional chromatographic methods which are robust, expensive and require skilled work force. Modification of the working electrode surface can result in enhanced electrochemical response towards selected pesticide making such electrode convenient sensor for facile and efficient determination of pesticides in low concentrations. New generation of nanomaterials is applied in electrode modification in order to improve its sensitivity and selectivity. The present review summarizes significant advances in voltammetric detection of pesticides for the period of the past five years. The major focus of this review is set to the types of carbon and oxide based materials, metal nanoparticles, composites and other materials employed to upgrade standard electrode configurations such as glassy carbon and carbon paste electrodes, boron doped diamond electrodes, screen printed and film electrodes, metal and amalgam, and other kinds of electrodes.",
journal = "Journal of Nanoscience and Nanotechnology",
title = "Recent Advances in Electrochemical Determination of Pesticides",
volume = "21",
number = "12",
pages = "5795-5811",
doi = "10.1166/jnn.2021.19541"
}
Momčilović, M. Z., Milićević, J. S.,& Ranđelović, M. S.. (2021). Recent Advances in Electrochemical Determination of Pesticides. in Journal of Nanoscience and Nanotechnology, 21(12), 5795-5811.
https://doi.org/10.1166/jnn.2021.19541
Momčilović MZ, Milićević JS, Ranđelović MS. Recent Advances in Electrochemical Determination of Pesticides. in Journal of Nanoscience and Nanotechnology. 2021;21(12):5795-5811.
doi:10.1166/jnn.2021.19541 .
Momčilović, Milan Z., Milićević, Jelena S., Ranđelović, Marjan S., "Recent Advances in Electrochemical Determination of Pesticides" in Journal of Nanoscience and Nanotechnology, 21, no. 12 (2021):5795-5811,
https://doi.org/10.1166/jnn.2021.19541 . .

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