A hybrid nanostructure based on reduced graphene oxide and ZnO has been obtained for the detection of volatile organic compounds. The sensing properties of the hybrid structure have been studied for different concentrations of ethanol and acetone. The response of the hybrid material is significantly higher compared to pristine ZnO nanostructures. The obtained results have shown that the nanohybrid is a promising structure for the monitoring of environmental pollutants and for the application of breath tests in assessment of exposure to volatile organic compounds
ZnO/graphene (ZnO-G) hybrid composites are prepared via hydrothermal synthesis with graphite, N-meth...
The requirements of green environmental and public health monitoring have become stricter along with...
Metal oxides are very important materials in gas-sensing and the possibility to obtain them as cryst...
A hybrid nanostructure based on reduced graphene oxide and ZnO has been obtained for the detection o...
Herein, we report the preparation of a hybrid material by combination of modified graphene and ZnO....
INTRODUCTION The sensing of gas molecules is of primary importance for environmental monitoring, con...
The sensing of gas molecules is of fundamental importance for environmental monitoring, control of c...
The sensing of gas molecules is of fundamental importance for environmental monitoring, control of c...
Coupling of graphene-based materials with metal oxide nanostructures is an effective way to obtain ...
In order to obtain acetone sensor with excellent sensitivity, selectivity, and rapid response/recove...
AbstractThe use of metal oxide single crystalline nanowires for chemical sensing of pollutant gases ...
Engineering of highly performing nanomaterials, capable of rapid detection of trace concentrations o...
Nanomaterials for highly selective and sensitive sensors towards specific gas molecules of volatile ...
Breakthroughs in the synthesis of hybrid materials have led to the development of a plethora of chem...
Nanomaterials for highly selective and sensitive sensors toward specific gas molecules of volatile o...
ZnO/graphene (ZnO-G) hybrid composites are prepared via hydrothermal synthesis with graphite, N-meth...
The requirements of green environmental and public health monitoring have become stricter along with...
Metal oxides are very important materials in gas-sensing and the possibility to obtain them as cryst...
A hybrid nanostructure based on reduced graphene oxide and ZnO has been obtained for the detection o...
Herein, we report the preparation of a hybrid material by combination of modified graphene and ZnO....
INTRODUCTION The sensing of gas molecules is of primary importance for environmental monitoring, con...
The sensing of gas molecules is of fundamental importance for environmental monitoring, control of c...
The sensing of gas molecules is of fundamental importance for environmental monitoring, control of c...
Coupling of graphene-based materials with metal oxide nanostructures is an effective way to obtain ...
In order to obtain acetone sensor with excellent sensitivity, selectivity, and rapid response/recove...
AbstractThe use of metal oxide single crystalline nanowires for chemical sensing of pollutant gases ...
Engineering of highly performing nanomaterials, capable of rapid detection of trace concentrations o...
Nanomaterials for highly selective and sensitive sensors towards specific gas molecules of volatile ...
Breakthroughs in the synthesis of hybrid materials have led to the development of a plethora of chem...
Nanomaterials for highly selective and sensitive sensors toward specific gas molecules of volatile o...
ZnO/graphene (ZnO-G) hybrid composites are prepared via hydrothermal synthesis with graphite, N-meth...
The requirements of green environmental and public health monitoring have become stricter along with...
Metal oxides are very important materials in gas-sensing and the possibility to obtain them as cryst...