Herein, we report the preparation of a hybrid material by combination of modified graphene and ZnO. The morphological and compositional analyses of the obtained material have been performed by means of scanning electron microscopy and energy dispersive X-ray analysis. The functional properties of the prepared structures have been investigated for their application in gas sensor devices. The gas sensing performance of the hybrid material show that the structure can be used for fabrication of chemical sensors, as well as in electronic nose technology. (C) 2016 The Authors. Published by Elsevier Ltd
In this work, graphene-oxide-decorated porous ZnO nanosheets were prepared using a hydrothermal meth...
In this study, hydrogen (H2) and methane (CH4) were used as reactive gases, and chemical vapor depos...
Gas sensors are devices that can convert the concentration of an analyte gas into an electronic sign...
Coupling of graphene-based materials with metal oxide nanostructures is an effective way to obtain ...
A hybrid nanostructure based on reduced graphene oxide and ZnO has been obtained for the detection ...
Graphene/metal oxide-based materials have been demonstrated as promising candidates for gas sensing ...
Graphene and its exotic forms have been widely recognized as exceptional materials for gas-sensing a...
Zinc oxide and graphene nanostructures are important technological materials because of their unique...
This paper develops a novel ultrasonic spray-assisted solvothermal (USS) method to synthesize wrappe...
Recently, graphene-based materials have engaged the attentiveness of all researchers doing research...
Zinc oxide and graphene nanostructures are important technological materials because of their unique...
There has been a remarkable excitement in graphene research since the famous discovery in 2004 by is...
Surface modification is a reliable method to enhance the sensing properties of pristine graphene by ...
AbstractGas sensors having zinc oxide (ZnO) nanoparticles as a sensing layer are consumes low power,...
AbstractIn order to increase the sensitivity and selectivity of semiconducting gas sensors, we have ...
In this work, graphene-oxide-decorated porous ZnO nanosheets were prepared using a hydrothermal meth...
In this study, hydrogen (H2) and methane (CH4) were used as reactive gases, and chemical vapor depos...
Gas sensors are devices that can convert the concentration of an analyte gas into an electronic sign...
Coupling of graphene-based materials with metal oxide nanostructures is an effective way to obtain ...
A hybrid nanostructure based on reduced graphene oxide and ZnO has been obtained for the detection ...
Graphene/metal oxide-based materials have been demonstrated as promising candidates for gas sensing ...
Graphene and its exotic forms have been widely recognized as exceptional materials for gas-sensing a...
Zinc oxide and graphene nanostructures are important technological materials because of their unique...
This paper develops a novel ultrasonic spray-assisted solvothermal (USS) method to synthesize wrappe...
Recently, graphene-based materials have engaged the attentiveness of all researchers doing research...
Zinc oxide and graphene nanostructures are important technological materials because of their unique...
There has been a remarkable excitement in graphene research since the famous discovery in 2004 by is...
Surface modification is a reliable method to enhance the sensing properties of pristine graphene by ...
AbstractGas sensors having zinc oxide (ZnO) nanoparticles as a sensing layer are consumes low power,...
AbstractIn order to increase the sensitivity and selectivity of semiconducting gas sensors, we have ...
In this work, graphene-oxide-decorated porous ZnO nanosheets were prepared using a hydrothermal meth...
In this study, hydrogen (H2) and methane (CH4) were used as reactive gases, and chemical vapor depos...
Gas sensors are devices that can convert the concentration of an analyte gas into an electronic sign...