The poly(brilliant cresyl blue) (PBCB)-modified activated glassy carbon electrode (AGCE) shows the catalytic activity toward the oxidation of hydroquinone (HQ) and catechol (CT). The modified electrode can also separate the oxidation peaks of HQ and CT in their mixture, which is not possible with bare GCE. These properties of the modified electrode can be utilized to fabricate an electrochemical sensor for sensitive and simultaneous detection of HQ and CT. In this study, an attempt is made to control the sensitivity of the modified electrodes. This can be accomplished by simply changing the activation condition of the GCE during electropolymerization. GCE can be activated via one-step (applying only oxidation potential) and two-step (applyi...
Abstract Background A simple and simultaneous elec...
This work presents the simultaneous determination of catechol (CC) and hydroquinone (HQ), employing ...
Glassy carbon electrodes (GCE) modified with carbon nanotubes (CNT) have been created for detection ...
A Poly (arginine acid)/GCE modified electrode was prepared by electrochemical polymerization method,...
A highly sensitive electrochemical sensor for the simultaneous determination of catechol (CC) and hy...
Abstract In this proposed work, direct green 6 (DG6) decorated carbon paste electrode (CPE) was fabr...
A simply and high selectively electrochemical method for simultaneous determination of hydroquinone ...
We report a straightforward heat treatment in air of commercial screen-printed carbon electrodes (SP...
Abstract: A simply and high selectively electrochemical method has been developed for the simultaneo...
A simply and high selectively electrochemical method has been developed for the simultaneous determi...
A glassy carbon electrode was modified with a copper(II) complex [Cu(Sal-β-Ala) (3,5-DMPz)2] (Sal = ...
Herein, a new facile and sensitive method was developed that enables the individual and simultaneous...
The authors describe an voltammetric catechol (CC) assay based on the use of a glassy carbon electro...
Porous electrodes based on polymethylmethacrylate and graphite foams (PMMA_G_F) have been developed ...
Abstract: Facile and inexpensive method for designing high performance sensors for H2O2 and polyphe...
Abstract Background A simple and simultaneous elec...
This work presents the simultaneous determination of catechol (CC) and hydroquinone (HQ), employing ...
Glassy carbon electrodes (GCE) modified with carbon nanotubes (CNT) have been created for detection ...
A Poly (arginine acid)/GCE modified electrode was prepared by electrochemical polymerization method,...
A highly sensitive electrochemical sensor for the simultaneous determination of catechol (CC) and hy...
Abstract In this proposed work, direct green 6 (DG6) decorated carbon paste electrode (CPE) was fabr...
A simply and high selectively electrochemical method for simultaneous determination of hydroquinone ...
We report a straightforward heat treatment in air of commercial screen-printed carbon electrodes (SP...
Abstract: A simply and high selectively electrochemical method has been developed for the simultaneo...
A simply and high selectively electrochemical method has been developed for the simultaneous determi...
A glassy carbon electrode was modified with a copper(II) complex [Cu(Sal-β-Ala) (3,5-DMPz)2] (Sal = ...
Herein, a new facile and sensitive method was developed that enables the individual and simultaneous...
The authors describe an voltammetric catechol (CC) assay based on the use of a glassy carbon electro...
Porous electrodes based on polymethylmethacrylate and graphite foams (PMMA_G_F) have been developed ...
Abstract: Facile and inexpensive method for designing high performance sensors for H2O2 and polyphe...
Abstract Background A simple and simultaneous elec...
This work presents the simultaneous determination of catechol (CC) and hydroquinone (HQ), employing ...
Glassy carbon electrodes (GCE) modified with carbon nanotubes (CNT) have been created for detection ...