Ester flavorants detection in foods with a bienzymatic biosensor based on a stable Prussian blue-copper electrodeposited on carbon paper electrode
-
Add time:08/18/2019 Source:sciencedirect.com
A stable and reproducible layer of Prussian blue (PB) modified with copper was electrodeposited on carbon paper electrodes for the multiple detection of ester flavorants with a bienzymatic biosensor. Carbon fiber composite paper was investigated as high-surface, low-cost substrate for biosensor development. The pre-activation of the electrode surface by cyclic voltammetry was necessary to improve the electrochemical properties before the electrochemical deposition of Prussian blue-copper film (PB-Cu). The stability and the reproducibility of the obtained PB-Cu carbon paper electrode was demonstrated at pH 7.4, optimum for biosensor development. The developed biosensor is based on the immobilization of two enzymes (carboxyl esterase and alcohol oxidase) by cross-linking with glutaraldehyde onto PB-Cu carbon paper electrode. A mixture of key aroma ester compounds (methyl butyrate, ethyl butyrate, methyl cinnamate and ethyl cinnamate) was detected in several food samples with low interferences.
We also recommend Trading Suppliers and Manufacturers of COPPER(II)I-BUTYRATE (cas 15432-56-1). Pls Click Website Link as below: cas 15432-56-1 suppliers
Prev:Ionic liquid functionalization of chitosan beads for improving thermal stability and copper ions uptake from aqueous solution
Next:EpidemiologyThe association between blood copper concentration and biomarkers related to cardiovascular disease risk – analysis of 206 individuals in the Northern Finland Birth Cohort 1966) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Magnetostructural correlation in tetracopper(II) cubanes08/25/2019
- Cytotoxic effect, differentiation, inhibition of growth and theoretical calculations of an N,N-donor ligands and its platinum(II), palladium(II) and copper(II) complexes08/24/2019
- Synthesis, reactivity and structures of mono- and dihaloacetato complexes of copper(I) and copper(II)08/23/2019
- The x-ray photoelectron spectra of copper(I) and copper(II) carboxylates08/22/2019
- Liquid–liquid extraction of cationic metal complexes with p-nonylphenol solvent:: Application to crown and thiacrown ether complexes of lead (II) and copper (II)08/21/2019
- Microbially mediated nitrate-reducing Fe(II) oxidation: Quantification of chemodenitrification and biological reactions08/20/2019
- EpidemiologyThe association between blood copper concentration and biomarkers related to cardiovascular disease risk – analysis of 206 individuals in the Northern Finland Birth Cohort 196608/19/2019
- Ionic liquid functionalization of chitosan beads for improving thermal stability and copper ions uptake from aqueous solution08/17/2019
- NoteEvaluation of bis-triphenylphosphano-copper(I)-butyrate (C3H7COOCu(PPh3)2) as catalyst for the synthesis of 1-glycopyranosyl-4-substituted-1,2,3-triazoles08/16/2019


