We demonstrate the coating of graphene onto the silica optical microfiber sensor for improving sodium nitrate detection at room temperature. The graphene obtained from graphene- polylactic acid filament was coated onto the microfiber based on drop casting technique. In the proposed sensor, the graphene acts as cladding to interact with analyte as well as functions to trap either sodium cation or nitrate anion and increases the effective refractive index of the cladding. The proposed sensor shows a good sensitivity of 1.29 dBm/% and resolution of 0.049%. The sensitivity, repeatababilty and reversible response of the sensor were improved by the coating of graphene layer. The presence of graphene on the surface microfiber works as passive clad...
The present work discusses the ammonia (NH3) sensing behavior of etched-tapered single mode fiber (S...
This paper presents the preparation of nanosized graphene hybridized with Nafion using a simple two ...
Graphene, a “wonder material”, is the world’s thinnest, strongest, and stiffest material, as well as...
A sodium nitrate sensor with graphene/gold coating is presented in this paper. A Kretschmann setup w...
A high sensitivity and simple magnesium sensor based on an silica optical microfiber coated with gra...
Sodium nitrate (NaNO 3 ) refractive index sensor was proposed and demonstrated by using a microfiber...
An optical fiber tip sensing probe coated with graphene is proposed for nitrate-sensing application....
Ammonia (NH3) is a colorless compound with a distinctive odor composed of nitrogen and hydrogen ato...
In this paper, a side polished multimode plastic optical fiber gas sensor coated with graphene/polya...
We developed a highly sensitive side-polished plastic optical fiber coated with chemical synthesized...
Graphene has become a bridge across optoelectronics, mechanics, and bio-chemical sensing due to its ...
In this paper, a fiber optic sensor was designed and implemented to detect the change in refractive ...
Reduced graphene oxide (rGO) sheets were self-assembled onto the surfaces of electrospun polymer nan...
A multi-walled carbon nanotubes (MWCNTs) coated silica microfiber sensor for the detection of magnes...
In this work the development of two different optical fibre-based chemical sensors (OFCSs), applied ...
The present work discusses the ammonia (NH3) sensing behavior of etched-tapered single mode fiber (S...
This paper presents the preparation of nanosized graphene hybridized with Nafion using a simple two ...
Graphene, a “wonder material”, is the world’s thinnest, strongest, and stiffest material, as well as...
A sodium nitrate sensor with graphene/gold coating is presented in this paper. A Kretschmann setup w...
A high sensitivity and simple magnesium sensor based on an silica optical microfiber coated with gra...
Sodium nitrate (NaNO 3 ) refractive index sensor was proposed and demonstrated by using a microfiber...
An optical fiber tip sensing probe coated with graphene is proposed for nitrate-sensing application....
Ammonia (NH3) is a colorless compound with a distinctive odor composed of nitrogen and hydrogen ato...
In this paper, a side polished multimode plastic optical fiber gas sensor coated with graphene/polya...
We developed a highly sensitive side-polished plastic optical fiber coated with chemical synthesized...
Graphene has become a bridge across optoelectronics, mechanics, and bio-chemical sensing due to its ...
In this paper, a fiber optic sensor was designed and implemented to detect the change in refractive ...
Reduced graphene oxide (rGO) sheets were self-assembled onto the surfaces of electrospun polymer nan...
A multi-walled carbon nanotubes (MWCNTs) coated silica microfiber sensor for the detection of magnes...
In this work the development of two different optical fibre-based chemical sensors (OFCSs), applied ...
The present work discusses the ammonia (NH3) sensing behavior of etched-tapered single mode fiber (S...
This paper presents the preparation of nanosized graphene hybridized with Nafion using a simple two ...
Graphene, a “wonder material”, is the world’s thinnest, strongest, and stiffest material, as well as...