A self-probing, gate-controlled, molecularly imprinted electrochemical sensor for ultrasensitive determination of p-nonylphenol
Autor: | Hao Guo, Xiao Wang, Jiebing Ai, Rui Xue, Xi Lei, Wu Yang |
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Jazyk: | angličtina |
Rok vydání: | 2018 |
Předmět: |
Detection limit
Chemistry Graphene Supporting electrolyte 010401 analytical chemistry Nanoparticle 02 engineering and technology 021001 nanoscience & nanotechnology 01 natural sciences 0104 chemical sciences Electrochemical gas sensor law.invention Nonylphenol lcsh:Chemistry chemistry.chemical_compound lcsh:Industrial electrochemistry lcsh:QD1-999 law Electrode Electrochemistry Cyclic voltammetry 0210 nano-technology Nuclear chemistry lcsh:TP250-261 |
Zdroj: | Electrochemistry Communications, Vol 89, Iss, Pp 1-5 (2018) |
ISSN: | 1388-2481 |
Popis: | A novel self-probing, gate-controlled, molecularly imprinted electrochemical sensor for ultrasensitive and highly selective determination of p-nonylphenol was prepared, based on a GCE electrode modified with Au nanoparticles and multiwalled carbon nanotubes/reduced graphene oxide nanoribbons (MWCNTs@rGONRs). The molecularly imprinted film was produced using p-aminothiophenol as the functional monomer, p-nonylphenol as the template molecule and tetrabutylammonium perchlorate as the supporting electrolyte. The modified electrode had specific recognition for the template molecule and very high electrocatalytical activity for electroreduction of the target molecule. The resulting sensor has been successfully used to determine p-nonylphenol using cyclic voltammetry and cathodic stripping different pulse voltammetry with detection limits of 0.73 pM (S/N = 3) and 4.8 fM (S/N = 3), respectively. The method demonstrated extremely high sensitivity and selectivity as well as a wide linear range and could be used to detect p-nonylphenol in environmental and food samples. Keywords: Self-probing gate-controlled effect, Molecularly imprinted electrochemical sensor, p-Nonylphenol, Multiwalled carbon nanotubes@reduced graphene oxide nanoribbons, Au nanoparticle |
Databáze: | OpenAIRE |
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