We propose an electrochemical sensor based on the enhanced electrocatalytic oxidation exhibited on a functionalized poly(tannic acid) coating to detect hydrazine. Tannic acid, a naturally abundant and low-cost polyphenol, was enzymatically polymerized with horseradish peroxidase and subsequently adsorbed on a disposable screen-printed carbon electrode with a short incubation time (30 min). The fabrication method proved to be reproducible (4.2 % relative standard deviation), with the sensors displaying high sensitivity (7 ?? 10-3 ??A mm-2 ??M-1) and selectivity even in the presence of various common interfering agents. The low detection limit (100 nM) and robustness of the sensor demonstrated its suitability for environmental applications. I...
A highly sensitive hydrazine sensor has been developed by using gold and platinum nanoparticles (NPs...
The combinatorial screening of different metallic nanoparticles as electrocatalysts was investigated...
We have developed a highly sensitive sensor of ZnFe2O4/reduced graphene oxide (ZnFe2O4/RGO) nanocomp...
A new technique for sensing nanomolar concentrations of hydrazine in water samples is reported. A sc...
A new technique for sensing nanomolar concentrations of hydrazine in water samples is reported. A sc...
We have developed electrochemical DNA and protein sensors on screen-printed electrodes based on the ...
We have developed electrochemical DNA and protein sensors on screen-printed electrodes based on the ...
A highly sensitive hydrazine sensor has been developed by using gold and platinum nanoparticles (NPs...
This study reports a detailed analysis of an electrode material containing poly(phenolphthalein), ca...
We have developed a simple and selective method for the electrochemical detection of hydrazine (HZ) ...
A highly efficient and environmentally benign electrode has been developed for the easy and fast det...
The detection of hydrazine (HZ) is an important application in analytical chemistry. There have been...
The electrochemical polymerization of glutamic acid at the glassy carbon electrode was investigated ...
Environmental and Analytical Chemistry Division, School of Advanced Sciences, Vellore Institute of ...
4-Pyridyl hydroquinone on a platinum electrode adsorbs through the pyridine nitrogen forming stable ...
A highly sensitive hydrazine sensor has been developed by using gold and platinum nanoparticles (NPs...
The combinatorial screening of different metallic nanoparticles as electrocatalysts was investigated...
We have developed a highly sensitive sensor of ZnFe2O4/reduced graphene oxide (ZnFe2O4/RGO) nanocomp...
A new technique for sensing nanomolar concentrations of hydrazine in water samples is reported. A sc...
A new technique for sensing nanomolar concentrations of hydrazine in water samples is reported. A sc...
We have developed electrochemical DNA and protein sensors on screen-printed electrodes based on the ...
We have developed electrochemical DNA and protein sensors on screen-printed electrodes based on the ...
A highly sensitive hydrazine sensor has been developed by using gold and platinum nanoparticles (NPs...
This study reports a detailed analysis of an electrode material containing poly(phenolphthalein), ca...
We have developed a simple and selective method for the electrochemical detection of hydrazine (HZ) ...
A highly efficient and environmentally benign electrode has been developed for the easy and fast det...
The detection of hydrazine (HZ) is an important application in analytical chemistry. There have been...
The electrochemical polymerization of glutamic acid at the glassy carbon electrode was investigated ...
Environmental and Analytical Chemistry Division, School of Advanced Sciences, Vellore Institute of ...
4-Pyridyl hydroquinone on a platinum electrode adsorbs through the pyridine nitrogen forming stable ...
A highly sensitive hydrazine sensor has been developed by using gold and platinum nanoparticles (NPs...
The combinatorial screening of different metallic nanoparticles as electrocatalysts was investigated...
We have developed a highly sensitive sensor of ZnFe2O4/reduced graphene oxide (ZnFe2O4/RGO) nanocomp...