Title :
Highly Sensitive Carbon Nanotubes Coated Etched Fiber Bragg Grating Sensor for Humidity Sensing
Author :
Shivananju, B.N. ; Yamdagni, S. ; Fazuldeen, Ruknudeen ; Kumar, Anakkat Koyilothu Sarin ; Nithin, Shamraju Purushotham ; Varma, M.M. ; Asokan, S.
Author_Institution :
Dept. of Instrum. & Appl. Phys., Indian Inst. of Sci., Bangalore, India
Abstract :
The sensing of relative humidity (RH) at room temperature has potential applications in several areas ranging from biomedical to horticulture, paper, and textile industries. In this paper, a highly sensitive humidity sensor based on carbon nanotubes (CNTs) coated on the surface of an etched fiber Bragg grating (EFBG) sensor has been demonstrated, for detecting RH over a wide range of 20%-90% at room temperature. When water molecules interact with the CNT coated EFBG, the effective refractive index of the fiber core changes, resulting in a shift in the Bragg wavelength. It has been possible to achieve a high sensitivity of ~31 RH, which is the highest compared with many of the existing FBG-based humidity sensors. The limit of detection in the CNT coated EFBG has been found to be ~0.03 RH . The experimental data shows a linear response of Bragg wavelength shift with increase in humidity. This novel method of incorporating CNTs on to the FBG sensor for humidity sensing has not been reported before.
Keywords :
Bragg gratings; carbon nanotubes; fibre optic sensors; humidity sensors; nanosensors; refractive index; Bragg wavelength shift; CNT coated EFBG; FBG-based humidity sensor; carbon nanotubes coated etched fiber Bragg grating sensor; fiber core; linear response; refractive index; relative humidity sensing; water molecules; Fiber gratings; Humidity; Optical fiber sensors; Refractive index; Temperature sensors; Etched fiber Bragg grating sensor; carbon nanotubes; humidity sensing;
Journal_Title :
Sensors Journal, IEEE
DOI :
10.1109/JSEN.2014.2312353