The paper presents resistance sensor structures with a graphene sensing layer. The structures were tested concerning their sensitivity to the affects of hydrogen, nitrogen dioxide and steam in an atmosphere of a synthetic air. Investigations have proved that resistance structures with a graphene layer are sensitive to the presence of the tested gases. The resistance of the structures amounted to about 10Ω, whereas changes in the resistances affected by the external gaseous medium were contained within the range of a several mΩ. The investigations confirmed that the resistance structures with graphene exposed to the affect of hydrogen in atmosphere of synthetic air change their resistances practically at once (within the order of only a few ...
Graphene nanoribbon (GNR), a superior material with two-dimensional structure and monolayer honeycom...
Graphene is suitable for sensor applications. Its highest surface-to-volume ratio makes graphene sen...
† Dedicated to Prof. Claus-Dieter Kohl on the occasion of his 70th birthday. Abstract: Graphene, a t...
The paper presents the results of investigations on the resistive structure with a graphene oxide (G...
In this study, the sensitivity of reduced graphene oxide structures (rGO) to the action of selected ...
The paper presents the results of investigations on resistance structures based on graphite oxide (G...
The resistivity of graphene is sensitive to the presence of gas molecules adsorbed on it. Since grap...
This bachelor thesis focuses on the general characterization and description of graphene and related...
This bachelor thesis deals with the utilization of graphene as a gas sensor and the effect of gate v...
This thesis study investigates the effects of differently prepared oxide substrates on gas sensing b...
The aim of this bachelor thesis is to sum up theoretical knowledge concerning gas detection by senso...
An easy transfer procedure to obtain graphene-based gas sensing devices operating at room temperatur...
Gas sensors are devices that convert a gas volume fraction into electrical signals, and they are wid...
In this paper, we present gas sensing properties of Pt/graphene-like nano-sheets towards hydrogen ga...
Graphene layers have been transferred directly on to paper without any intermediate layers to yield ...
Graphene nanoribbon (GNR), a superior material with two-dimensional structure and monolayer honeycom...
Graphene is suitable for sensor applications. Its highest surface-to-volume ratio makes graphene sen...
† Dedicated to Prof. Claus-Dieter Kohl on the occasion of his 70th birthday. Abstract: Graphene, a t...
The paper presents the results of investigations on the resistive structure with a graphene oxide (G...
In this study, the sensitivity of reduced graphene oxide structures (rGO) to the action of selected ...
The paper presents the results of investigations on resistance structures based on graphite oxide (G...
The resistivity of graphene is sensitive to the presence of gas molecules adsorbed on it. Since grap...
This bachelor thesis focuses on the general characterization and description of graphene and related...
This bachelor thesis deals with the utilization of graphene as a gas sensor and the effect of gate v...
This thesis study investigates the effects of differently prepared oxide substrates on gas sensing b...
The aim of this bachelor thesis is to sum up theoretical knowledge concerning gas detection by senso...
An easy transfer procedure to obtain graphene-based gas sensing devices operating at room temperatur...
Gas sensors are devices that convert a gas volume fraction into electrical signals, and they are wid...
In this paper, we present gas sensing properties of Pt/graphene-like nano-sheets towards hydrogen ga...
Graphene layers have been transferred directly on to paper without any intermediate layers to yield ...
Graphene nanoribbon (GNR), a superior material with two-dimensional structure and monolayer honeycom...
Graphene is suitable for sensor applications. Its highest surface-to-volume ratio makes graphene sen...
† Dedicated to Prof. Claus-Dieter Kohl on the occasion of his 70th birthday. Abstract: Graphene, a t...