In this paper, graphene/mica and graphene/SiO2 based ammonia gas sensors are compared. It is found that adsorbed NH3 molecules result in up-shifting of the Fermi level in graphene, leading to a significant increase in graphene resistance. In comparison with SiO2 supporting substrate, the mica supporting substrate is found to induce more p-doping in graphene, in favour of NH3 molecule adsorption, yielding a high sensitivity. These findings suggest that the substrate plays an important role in mediating the interaction between graphene and NH3 molecules and that mica can be an excellent underlying substrate for graphene for ammonia gas detection.Published versio
In this work, we design a new hybrid sensor in which graphene (G) combined with an ultrathin polypyr...
The outstanding versatility of graphene for surface functionalization has been exploited by its deco...
Integrated optic ammonia gas sensor using graphene covered silicon microring resonator is proposed. ...
In this paper, graphene/mica and graphene/SiO2 based ammonia gas sensors are compared. It is found t...
Graphene (G) is a two-dimensional material with exceptional sensing properties. In general, graphene...
The gas sensor based on pristine graphene with conductance type was studied theoretically and experi...
Ammonia is widely employed in several industrial processes such as fertilizer, fire power plant, and...
This study presents the sensitivity of graphene nanoribbon (GNR) when exposed to ammonia gas at room...
Graphene in its pristine form has demonstrated a gas detection ability in an inert carrier gas. For ...
Graphene has been widely explored as an ideal platform for gas sensing owing to exceptional properti...
A hybrid structure gas sensor of reduced graphene oxide (RGO) decorated graphene (RGO-Gr) is designe...
This study presents the sensitivity of graphene nanoribbon (GNR) when exposed to ammonia gas at room...
The work aims to develop a simple and low cost ammonia gas sensor based on reduced graphene oxide (r...
Ammonia gas sensors are very essential in many industries and everyday life. However, their complica...
In this paper, gas sensing characteristics of sulfur-doped graphene oxide (S-GO) are firstly present...
In this work, we design a new hybrid sensor in which graphene (G) combined with an ultrathin polypyr...
The outstanding versatility of graphene for surface functionalization has been exploited by its deco...
Integrated optic ammonia gas sensor using graphene covered silicon microring resonator is proposed. ...
In this paper, graphene/mica and graphene/SiO2 based ammonia gas sensors are compared. It is found t...
Graphene (G) is a two-dimensional material with exceptional sensing properties. In general, graphene...
The gas sensor based on pristine graphene with conductance type was studied theoretically and experi...
Ammonia is widely employed in several industrial processes such as fertilizer, fire power plant, and...
This study presents the sensitivity of graphene nanoribbon (GNR) when exposed to ammonia gas at room...
Graphene in its pristine form has demonstrated a gas detection ability in an inert carrier gas. For ...
Graphene has been widely explored as an ideal platform for gas sensing owing to exceptional properti...
A hybrid structure gas sensor of reduced graphene oxide (RGO) decorated graphene (RGO-Gr) is designe...
This study presents the sensitivity of graphene nanoribbon (GNR) when exposed to ammonia gas at room...
The work aims to develop a simple and low cost ammonia gas sensor based on reduced graphene oxide (r...
Ammonia gas sensors are very essential in many industries and everyday life. However, their complica...
In this paper, gas sensing characteristics of sulfur-doped graphene oxide (S-GO) are firstly present...
In this work, we design a new hybrid sensor in which graphene (G) combined with an ultrathin polypyr...
The outstanding versatility of graphene for surface functionalization has been exploited by its deco...
Integrated optic ammonia gas sensor using graphene covered silicon microring resonator is proposed. ...