<p>We develop graphene-based devices fabricated by alternating current dielectrophoresis (ac-DEP) for highly sensitive nitric oxide (NO) gas detection. The novel device comprises the sensitive channels of palladium-decorated reduced graphene oxide (Pd-RGO) and the electrodes covered with chemical vapor deposition (CVD)-grown graphene. The highly sensitive, recoverable, and reliable detection of NO gas ranging from 2 to 420 ppb with response time of several hundred.. seconds has been achieved at room temperature. The facile and scalable route for high performance suggests a promising application of graphene devices toward the human exhaled NO and environmental pollutant detections. </p
We have devised a method to simultaneously reduce graphene oxide and gold metal ions onto the surfac...
Ultrasensitive gas sensor based on epitaxial graphene on SiC has been fabricated. The sensor exhibit...
4 Pages, 7 Figures.-- 12th Spanish Conference on Electron Devices, 2018, 14-16 noviembre 2018, Salam...
We report about technology of fabrication and optimization of a gas sensor based on epitaxial graphe...
Sensitive and selective detection of target gases is the ultimate goal for commercialization of grap...
The work herein presented investigates the behavior of graphene-based gas sensors realized by using ...
Reduced graphene oxide (RGO) has proven to be effective in trace gas detection at room temperature a...
AbstractThe high sensitivity of graphene to the adsorption/desorption of gas molecule, is at the ver...
In this paper we report on gas sensors based on graphene grown by Chemical Vapor Deposition at 850 °...
Graphene is worth evaluating for chemical sensing and biosensing due to its outstanding physical and...
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...
Gas sensor operating in part-per billion (ppb) range is required for environmental monitoring of nit...
The sp2 carbon-based allotropes have been extensively exploited for the realization of gas sensors i...
Gas sensor operating in part-per billion (ppb) range is required for environmental monitoring of nit...
We have devised a method to simultaneously reduce graphene oxide and gold metal ions onto the surfac...
Ultrasensitive gas sensor based on epitaxial graphene on SiC has been fabricated. The sensor exhibit...
4 Pages, 7 Figures.-- 12th Spanish Conference on Electron Devices, 2018, 14-16 noviembre 2018, Salam...
We report about technology of fabrication and optimization of a gas sensor based on epitaxial graphe...
Sensitive and selective detection of target gases is the ultimate goal for commercialization of grap...
The work herein presented investigates the behavior of graphene-based gas sensors realized by using ...
Reduced graphene oxide (RGO) has proven to be effective in trace gas detection at room temperature a...
AbstractThe high sensitivity of graphene to the adsorption/desorption of gas molecule, is at the ver...
In this paper we report on gas sensors based on graphene grown by Chemical Vapor Deposition at 850 °...
Graphene is worth evaluating for chemical sensing and biosensing due to its outstanding physical and...
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...
Gas sensor operating in part-per billion (ppb) range is required for environmental monitoring of nit...
The sp2 carbon-based allotropes have been extensively exploited for the realization of gas sensors i...
Gas sensor operating in part-per billion (ppb) range is required for environmental monitoring of nit...
We have devised a method to simultaneously reduce graphene oxide and gold metal ions onto the surfac...
Ultrasensitive gas sensor based on epitaxial graphene on SiC has been fabricated. The sensor exhibit...
4 Pages, 7 Figures.-- 12th Spanish Conference on Electron Devices, 2018, 14-16 noviembre 2018, Salam...