We describe a novel solid phase sorbent that was synthesized by coupling graphene oxide (GO) to ethylenediamine (EDA). This nanomaterial (referred to as GO-EDA) is capable of adsorbing the ions of iron, cobalt, nickel, copper, zinc and lead. The ethylenediamine-modified graphene oxide was characterized by X-ray photoelectron spectroscopy, scanning electron microscopy and Fourier transform infrared spectroscopy. The analytical procedure relies on (a) sorption of metal ions on GO-EDA dispersed in aqueous samples; (b) filtering, and (c) direct submission of the filter paper to energy-dispersive X-ray fluorescence spectrometry. This kind of dispersive micro-solid phase extraction was optimized with respect to pH values, concentration of GO-EDA,...
DoctorIron and copper nanoparticles are versatile enough to be used in many types oftechnological ap...
Graphene oxide (GO) may strongly interact with toxic metal ions and mineral particles upon release i...
International audienceGraphene oxide (GO) was chemically modified by bis(2-pyridylmethyl)amino group...
Graphene oxide is a derivates of graphene that has a ultrahigh specific surface space with variety o...
A graphene-based cobalt nanocomposite (G/Co3O4) was synthesized and used for the first time as an ef...
A nanocomposite prepared from graphene nanosheets and cerium nanoparticles (G/CeO2) was applied to t...
Heavy metals such a lead or cadmium have a wide range of detrimental and devastating effects on huma...
Herein, we present the application of a novel graphene oxide-poly(dimethylsiloxane) (GO-PDMS) compos...
<div><p>A sensitive and simple method has been established for simultaneous preconcentration of trac...
WOS: 000363815600019PubMed ID: 26695244Magnetic allylamine modified graphene oxide-poly(vinyl acetat...
Heavy metal pollution is very prevalent in our environment. The entire removal of heavy metal and or...
A modified Totland's approach was used to separate and preconcentrate trace elements from cutting ro...
The current study portrays a dispersive solid-phase extraction as a silica nanoparticle-covered Grap...
Graphene oxide (GO), an up-and-coming material rich in oxygenated groups, shows much promise in poll...
Graphene oxide (GO)-layered nanosheets with a two-dimensional carbon lattice is linked to styrenic c...
DoctorIron and copper nanoparticles are versatile enough to be used in many types oftechnological ap...
Graphene oxide (GO) may strongly interact with toxic metal ions and mineral particles upon release i...
International audienceGraphene oxide (GO) was chemically modified by bis(2-pyridylmethyl)amino group...
Graphene oxide is a derivates of graphene that has a ultrahigh specific surface space with variety o...
A graphene-based cobalt nanocomposite (G/Co3O4) was synthesized and used for the first time as an ef...
A nanocomposite prepared from graphene nanosheets and cerium nanoparticles (G/CeO2) was applied to t...
Heavy metals such a lead or cadmium have a wide range of detrimental and devastating effects on huma...
Herein, we present the application of a novel graphene oxide-poly(dimethylsiloxane) (GO-PDMS) compos...
<div><p>A sensitive and simple method has been established for simultaneous preconcentration of trac...
WOS: 000363815600019PubMed ID: 26695244Magnetic allylamine modified graphene oxide-poly(vinyl acetat...
Heavy metal pollution is very prevalent in our environment. The entire removal of heavy metal and or...
A modified Totland's approach was used to separate and preconcentrate trace elements from cutting ro...
The current study portrays a dispersive solid-phase extraction as a silica nanoparticle-covered Grap...
Graphene oxide (GO), an up-and-coming material rich in oxygenated groups, shows much promise in poll...
Graphene oxide (GO)-layered nanosheets with a two-dimensional carbon lattice is linked to styrenic c...
DoctorIron and copper nanoparticles are versatile enough to be used in many types oftechnological ap...
Graphene oxide (GO) may strongly interact with toxic metal ions and mineral particles upon release i...
International audienceGraphene oxide (GO) was chemically modified by bis(2-pyridylmethyl)amino group...