Hartini Ahmad Rafaie
University of Malaya
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Publication
Featured researches published by Hartini Ahmad Rafaie.
IEEE Sensors Journal | 2015
Zuraidah Harith; Ninik Irawati; Hartini Ahmad Rafaie; Malathy Batumalay; S. W. Harun; Roslan Md Nor; H. Ahmad
A relative humidity (RH) sensor is demonstrated using a tapered plastic optical fiber (POF) that is coated with Al-doped ZnO nanostructures. A simple etching method was used to fabricate the tapered POF that operates based on intensity modulation technique. The tapered fiber was then coated with Al-doped ZnO nanostructures using sol-gel immersion method with different mol% of Al nitrate that acts as a dopant. The 1 mol% of Al nitrate that used in the synthesis process exhibited better performance compared with the other doping concentrations. Then, results obtained for both undoped ZnO and 1 mol% of Al-doped ZnO were compared and investigated. The performance of 1 mol% of Al-doped ZnO demonstrated better linearity and sensitivity of 97.5% and 0.0172 mV/%, respectively, whereas the undoped ZnO yielded linearity and sensitivity of 93.3% and 0.0029 mV/%, respectively. The proposed sensor provides numerous advantages, such as simplicity of design, low cost of production, higher mechanical strength, and is easier to handle compared with silica fiber optic. Results show that tapered POF with Al-doped ZnO nanostructures enables the increase in sensitivity of fiber for detection of changes in RH.
IEEE Sensors Journal | 2016
A. Lokman; Hamzah Arof; S. W. Harun; Zuraidah Harith; Hartini Ahmad Rafaie; Roslan Md Nor
A simple optical fiber relative humidity (RH) sensor was proposed and demonstrated using a dumbbell-shaped inline Mach-Zehnder interferometer (IMZI) as a probe. The humidity sensor was constructed by coating the tapered waist region of the IMZI with ZnO nanowires. Based on an optical interferometric technique, the response of the sensor probe was examined by changing the RH within a range of 35%-60% RH. A wavelength shift of 0.490 nm was achieved for a humidity variation from 35% to 60% RH. It was also found that the sensitivity of IMZI-based sensor improved from 0.0002 to 0.020 nm/%RH with the ZnO coating.
Sensors and Actuators A-physical | 2014
Malathy Batumalay; Zuraidah Harith; Hartini Ahmad Rafaie; Fauzan Ahmad; M. Khasanah; S. W. Harun; Roslan Md Nor; H. Ahmad
Materials Express | 2015
Hartini Ahmad Rafaie; Roslan Md Nor; Yusoff Mohd Amin
Materials Letters | 2014
Hartini Ahmad Rafaie; N.A. Samat; R. Md. Nor
Indian journal of science and technology | 2015
Zuraidah Harith; Ninik Irawati; Malathy Batumalay; Hartini Ahmad Rafaie; G. Yun; S. W. Harun; Roslan Md Nor; H. Ahmad
Sensors and Actuators A-physical | 2015
A. Lokman; S. W. Harun; Zuraidah Harith; Hartini Ahmad Rafaie; Roslan Md Nor; Hamzah Arof
Jurnal Teknologi | 2015
Hazli Rafis; Ninik Irawati; Hartini Ahmad Rafaie; H. Ahmad; S. W. Harun; Roslan Md Nor
Advanced Materials Research | 2016
Hartini Ahmad Rafaie; Roslan Md Nor; Yusoff Mohd Amin
Advanced Materials Research | 2015
Hartini Ahmad Rafaie; Roslan Md Nor; Yusoff Mohd Amin