In this work, optical sensing performance of tapered multimode fiber tip coated with graphene oxide (GO) nanostructured thin film towards aqueous ethanol with different concentrations is investigated. The tapering process of the optical fiber is done by a glass processing machine. The multimode optical fiber tip is dip-coated with GO and annealed at 70 °C to enhance the binding of the nanomaterials to the silica fiber. FESEM, Raman microscopy and XRD analyses are performed to micro-characterize the GO thin films. The morphology of the GO is observed to be in sheets forms. The reflectance response of the GO coated fiber tip is compared with the uncoated tip. The measurements are taken using a spectrophotometer in the optical wavelength r...
Ethanol is a highly combustible chemical universally designed for biomedical applications. In this p...
Ethanol is a highly flammable chemical and is widely used for medical and industrial applications. I...
Optical fiber sensors are widely gaining popularity over the past two decades as the call for highly...
In this paper, optical multimode fiber reflectance sensor for ethanol with different concentrations ...
In this paper, optical multimode fiber reflectance sensor for ethanol with different concentrations ...
The investigation of graphene oxide (GO) for sensing applications is attractive due to its nanoscale...
Tapered optical fibers coated with graphene and graphene oxide (GO) as the active layer for ethanol ...
Sensing devices, especially optical sensors, are becoming increasingly popular in the last decade. T...
Typically, evanescent-field optical fiber sensors utilize tapered fiber structure to enhance the eva...
Recently, studies based on tapered optical fiber have received much attention as compared to convent...
The investigation of graphene oxide (GO) for sensing applications is attractive due to its nanoscale...
The investigation of graphene oxide (GO) for sensing applications is attractive due to its nanoscale...
A silver nanoparticle-incorporated reduced graphene oxide (Ag/rGO) nanocomposite-based tapered optic...
The influence of graphene oxide (GO) over the features of an optical fiber ethanol sensor based on l...
Ethanol is a highly combustible chemical universally designed for biomedical applications. In this p...
Ethanol is a highly combustible chemical universally designed for biomedical applications. In this p...
Ethanol is a highly flammable chemical and is widely used for medical and industrial applications. I...
Optical fiber sensors are widely gaining popularity over the past two decades as the call for highly...
In this paper, optical multimode fiber reflectance sensor for ethanol with different concentrations ...
In this paper, optical multimode fiber reflectance sensor for ethanol with different concentrations ...
The investigation of graphene oxide (GO) for sensing applications is attractive due to its nanoscale...
Tapered optical fibers coated with graphene and graphene oxide (GO) as the active layer for ethanol ...
Sensing devices, especially optical sensors, are becoming increasingly popular in the last decade. T...
Typically, evanescent-field optical fiber sensors utilize tapered fiber structure to enhance the eva...
Recently, studies based on tapered optical fiber have received much attention as compared to convent...
The investigation of graphene oxide (GO) for sensing applications is attractive due to its nanoscale...
The investigation of graphene oxide (GO) for sensing applications is attractive due to its nanoscale...
A silver nanoparticle-incorporated reduced graphene oxide (Ag/rGO) nanocomposite-based tapered optic...
The influence of graphene oxide (GO) over the features of an optical fiber ethanol sensor based on l...
Ethanol is a highly combustible chemical universally designed for biomedical applications. In this p...
Ethanol is a highly combustible chemical universally designed for biomedical applications. In this p...
Ethanol is a highly flammable chemical and is widely used for medical and industrial applications. I...
Optical fiber sensors are widely gaining popularity over the past two decades as the call for highly...