A simple protocol for the chemical modification of graphene with platinum nanoparticles and its subsequent electroanalytical application toward sensitive and selective determination of arsenic has been described. Chemical modification was carried out by the simultaneous and sequential chemical reduction of graphene oxide and hexachloroplatinic acid in the presence of ethylene glycol as a mild reducing agent. The synthesized graphene-platinum nanocomposite (Gr-nPt) has been characterized through infrared spectroscopy, x-ray diffraction study, field emission scanning electron microscopy and cyclic voltammetry (CV) techniques. CV and square-wave anodic stripping voltammetry have been used to quantify arsenic. The proposed nanostructure showed ...
Electrochemical sensors integrating hybrid nanostructured platforms are a promising alternative to c...
The use of graphene in the field of electrochemical sensors is increasing due to two main properties...
Arsenic is extremely abundant in the Earth’s crust and is one of the most common environmental pollu...
Open Access Under Creative Commons AttributionA simple protocol for the chemical modification of gra...
A simple protocol for the chemical modification of graphene with platinum nanoparticles and its subs...
Reduced graphene oxide-lead dioxide composite is formed when EGO coated surface is electrochemically...
Reduced graphene oxide-lead dioxide composite is formed when EGO coated surface is electrochemically...
In this work, an electrochemical sensor has been developed for trace determination of As(III) in wat...
Excessive levels of heavy metals or even small doses of very toxic heavy metals can be damaging to t...
Abstract: This study explores the applications of nanomaterial modified on glassy carbon electrode (...
Abstract: This study explores the applications of nanomaterial modified on glassy carbon electrode (...
The present study introduced a very sensitive and low-cost analytical procedure based on voltammetry...
In this study, a stable, sensitive electrochemical sensor was fabricated by the electrochemical code...
Abstract: This study explores the applications of nanomaterial modified on glassy carbon electrode (...
Nowadays, heavy metal ion pollution in water is becoming more and more common, especially arsenic, w...
Electrochemical sensors integrating hybrid nanostructured platforms are a promising alternative to c...
The use of graphene in the field of electrochemical sensors is increasing due to two main properties...
Arsenic is extremely abundant in the Earth’s crust and is one of the most common environmental pollu...
Open Access Under Creative Commons AttributionA simple protocol for the chemical modification of gra...
A simple protocol for the chemical modification of graphene with platinum nanoparticles and its subs...
Reduced graphene oxide-lead dioxide composite is formed when EGO coated surface is electrochemically...
Reduced graphene oxide-lead dioxide composite is formed when EGO coated surface is electrochemically...
In this work, an electrochemical sensor has been developed for trace determination of As(III) in wat...
Excessive levels of heavy metals or even small doses of very toxic heavy metals can be damaging to t...
Abstract: This study explores the applications of nanomaterial modified on glassy carbon electrode (...
Abstract: This study explores the applications of nanomaterial modified on glassy carbon electrode (...
The present study introduced a very sensitive and low-cost analytical procedure based on voltammetry...
In this study, a stable, sensitive electrochemical sensor was fabricated by the electrochemical code...
Abstract: This study explores the applications of nanomaterial modified on glassy carbon electrode (...
Nowadays, heavy metal ion pollution in water is becoming more and more common, especially arsenic, w...
Electrochemical sensors integrating hybrid nanostructured platforms are a promising alternative to c...
The use of graphene in the field of electrochemical sensors is increasing due to two main properties...
Arsenic is extremely abundant in the Earth’s crust and is one of the most common environmental pollu...