In this study, modification of glassy carbon electrode with electrochemically reduced graphene oxide (ERGO) and acid treated multi-walled carbon nanotubes (A-MWCNT) was investigated for the voltammetric determination of LEV in body fluids and pharmaceutical products. Different combinations of GO, ERGO, MWCNT and A-MWCNT were searched and the best results obtained with GC/ERGO/A-MWCNT electrode. The prepared modified electrode showed electrocatalytic acitivity towards LEV oxidation by increasing oxidation peak currents 293 times. Characterizations of the modified electrode was performed with cyclic voltammetry, electrochemical impedance spectroscopy and raman measurements. The highest oxidation peak current was observed at pH value of 2.0. T...
In this work, a high-sensitive electrochemical sensor of Norfloxacin (NFX) has been developed using ...
The electrochemical oxidation of an antibacterial drug, gatifloxacin (GTF), at multi-walled carbon n...
This study reports a highly selective and sensitive electrochemical technique for levodopa and cabeg...
A glassy carbon electrode (GCE) was modified with a nanocomposite prepared from polymerized beta-cyc...
A glassy carbon electrode (GCE) was modified with a nanocomposite prepared from polymerized β-cyclod...
A novel electrochemical sensor has been developed for levofloxacin (LEV), by coating a glassy carbon...
In this paper, an electrochemical sensor for levofloxacin detection was developed by electrochemical...
In this paper, an electrochemical sensor for levofloxacin detection was developed by electrochemical...
A new electrochemical sensor for the detection of levofloxacin (LV) was efficiently realized. The ai...
In this study, a modified cobalt oxide (Co3O4) carbon paste electrode was prepared for the detection...
In this work, we successfully prepared a modified cobalt oxide (Co3O4) carbon paste electrode to det...
Levodopa (LD), the biological precursor of catecholamines, is the most widely prescribed drug in the...
The excessive use of levofloxacin (LEV) can lead to significant environmental pollution, while also ...
This work describes a glassy carbon electrode (GCE) modified by 4-((E)-(2-methyl-4-nitrophenylimino)...
In this work, a norfloxacin selective modified glassy carbon electrode (GCE) based on a molecularly ...
In this work, a high-sensitive electrochemical sensor of Norfloxacin (NFX) has been developed using ...
The electrochemical oxidation of an antibacterial drug, gatifloxacin (GTF), at multi-walled carbon n...
This study reports a highly selective and sensitive electrochemical technique for levodopa and cabeg...
A glassy carbon electrode (GCE) was modified with a nanocomposite prepared from polymerized beta-cyc...
A glassy carbon electrode (GCE) was modified with a nanocomposite prepared from polymerized β-cyclod...
A novel electrochemical sensor has been developed for levofloxacin (LEV), by coating a glassy carbon...
In this paper, an electrochemical sensor for levofloxacin detection was developed by electrochemical...
In this paper, an electrochemical sensor for levofloxacin detection was developed by electrochemical...
A new electrochemical sensor for the detection of levofloxacin (LV) was efficiently realized. The ai...
In this study, a modified cobalt oxide (Co3O4) carbon paste electrode was prepared for the detection...
In this work, we successfully prepared a modified cobalt oxide (Co3O4) carbon paste electrode to det...
Levodopa (LD), the biological precursor of catecholamines, is the most widely prescribed drug in the...
The excessive use of levofloxacin (LEV) can lead to significant environmental pollution, while also ...
This work describes a glassy carbon electrode (GCE) modified by 4-((E)-(2-methyl-4-nitrophenylimino)...
In this work, a norfloxacin selective modified glassy carbon electrode (GCE) based on a molecularly ...
In this work, a high-sensitive electrochemical sensor of Norfloxacin (NFX) has been developed using ...
The electrochemical oxidation of an antibacterial drug, gatifloxacin (GTF), at multi-walled carbon n...
This study reports a highly selective and sensitive electrochemical technique for levodopa and cabeg...