Here we report on the synthesis of caesium doped graphene oxide (GO-Cs) and its application to the development of a novel NO2 gas sensor. The GO, synthesized by oxidation of graphite through chemical treatment, was doped with Cs by thermal solid-state reaction. The samples, dispersed in DI water by sonication, have been drop-casted on standard interdigitated Pt electrodes. The response of both pristine and Cs doped GO to NO2 at room temperature is studied by varying the gas concentration. The developed GO-Cs sensor shows a higher response to NO2 than the pristine GO based sensor due to the oxygen functional groups. The detection limit measured with GO-Cs sensor is ≈90 ppb
4 Pages, 7 Figures.-- 12th Spanish Conference on Electron Devices, 2018, 14-16 noviembre 2018, Salam...
Abstract In this study, we use nitrogen-doped to improving the gas-sensing properties of reduced gra...
We demonstrate proof-of-concept graphene (a) sensors for environmental monitoring of ultralow concen...
Here we report on the synthesis of caesium doped graphene oxide (GO-Cs) and its application to the d...
Here we report on the synthesis of caesium doped graphene oxide (GO-Cs) and its application to the d...
Single and few-layer graphene nanosheets (GNs) have successfully synthesized by a modified Hummer...
AbstractThe high sensitivity of graphene to the adsorption/desorption of gas molecule, is at the ver...
<p>We develop graphene-based devices fabricated by alternating current dielectrophoresis (ac-DEP) fo...
The excellent sensing capabilities of SnS2 and the electrical properties of reduced graphene oxide (...
NO2 gas is a harmful vapor that, when present in large quantities, can impose severe threats on hea...
Graphene and its related materials have attracted much interest in sensing applications because of t...
We report about technology of fabrication and optimization of a gas sensor based on epitaxial graphe...
Graphene is worth evaluating for chemical sensing and biosensing due to its outstanding physical and...
Reduced graphene oxide (RGO) has proven to be effective in trace gas detection at room temperature a...
Graphene and its related materials have attracted much interest in sensing applications because of t...
4 Pages, 7 Figures.-- 12th Spanish Conference on Electron Devices, 2018, 14-16 noviembre 2018, Salam...
Abstract In this study, we use nitrogen-doped to improving the gas-sensing properties of reduced gra...
We demonstrate proof-of-concept graphene (a) sensors for environmental monitoring of ultralow concen...
Here we report on the synthesis of caesium doped graphene oxide (GO-Cs) and its application to the d...
Here we report on the synthesis of caesium doped graphene oxide (GO-Cs) and its application to the d...
Single and few-layer graphene nanosheets (GNs) have successfully synthesized by a modified Hummer...
AbstractThe high sensitivity of graphene to the adsorption/desorption of gas molecule, is at the ver...
<p>We develop graphene-based devices fabricated by alternating current dielectrophoresis (ac-DEP) fo...
The excellent sensing capabilities of SnS2 and the electrical properties of reduced graphene oxide (...
NO2 gas is a harmful vapor that, when present in large quantities, can impose severe threats on hea...
Graphene and its related materials have attracted much interest in sensing applications because of t...
We report about technology of fabrication and optimization of a gas sensor based on epitaxial graphe...
Graphene is worth evaluating for chemical sensing and biosensing due to its outstanding physical and...
Reduced graphene oxide (RGO) has proven to be effective in trace gas detection at room temperature a...
Graphene and its related materials have attracted much interest in sensing applications because of t...
4 Pages, 7 Figures.-- 12th Spanish Conference on Electron Devices, 2018, 14-16 noviembre 2018, Salam...
Abstract In this study, we use nitrogen-doped to improving the gas-sensing properties of reduced gra...
We demonstrate proof-of-concept graphene (a) sensors for environmental monitoring of ultralow concen...