The authors describe an voltammetric catechol (CC) assay based on the use of a glassy carbon electrode (GCE) modified with a composite consisting of graphene oxide and polymelamine (GO/PM). The modified GCE was characterized by field emission scanning electron microscopy, elemental analysis, Raman spectroscopy and FTIR. Cyclic voltammetry reveals a well-defined response to CC, with an oxidation peak current that is distinctly enhanced compared to electrodes modified with GO or PM only. The combined synergetic activity of GO and PM in the composite also results in a lower oxidation potential. Differential pulse voltammetry (DPV) shows a response that is linear in the 0.03 to 138 μM CC concentration range. The detection limit is 8 nM, and the...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...
A simple and sensitive electrochemical sensor was prepared by using electrodeposition of the cetyltr...
In this paper, a simple strategy was proposed for the analysis of catechol by a carbon paste electro...
A simple and cost effective synthesis of nanomaterials with advanced physical and chemical propertie...
A simple and cost effective synthesis of nanomaterials with advanced physical and chemical propertie...
A simple and cost effective synthesis of nanomaterials with advanced physical and chemical propertie...
A novel modified electrode for voltammetric catechol determination was fabricated by electroploymeri...
In the present study, a stable and more selective electrochemical sensor for catechol (CC) detection...
© 2017 The Authors. The present work describes an amperometric determination of gallic acid (GA) usi...
A sensor based on glassy carbon (GC) electrode modified with bis(1,10-phenantroline)copper(II) bis(t...
In this experiment, an electrosynthesis of a triazole-thiol derivative (3-amino-1,2,4-triazole-5-thi...
none4noGlassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, ...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...
A simple and sensitive electrochemical sensor was prepared by using electrodeposition of the cetyltr...
In this paper, a simple strategy was proposed for the analysis of catechol by a carbon paste electro...
A simple and cost effective synthesis of nanomaterials with advanced physical and chemical propertie...
A simple and cost effective synthesis of nanomaterials with advanced physical and chemical propertie...
A simple and cost effective synthesis of nanomaterials with advanced physical and chemical propertie...
A novel modified electrode for voltammetric catechol determination was fabricated by electroploymeri...
In the present study, a stable and more selective electrochemical sensor for catechol (CC) detection...
© 2017 The Authors. The present work describes an amperometric determination of gallic acid (GA) usi...
A sensor based on glassy carbon (GC) electrode modified with bis(1,10-phenantroline)copper(II) bis(t...
In this experiment, an electrosynthesis of a triazole-thiol derivative (3-amino-1,2,4-triazole-5-thi...
none4noGlassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, ...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...
Glassy carbon electrodes were modified by drop casting carbon nanomaterials, graphene oxide, GO, and...