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Effect of displacement on resistance and capacitance of polyaniline film
Authors:Khasan Sanginovich Karimov  Muhammad Tariq Saee  Fazal Ahmad Khalid  Syed Abdul Moiz
Affiliation:GIK Institute of Engineering Sciences and Technology, Topi 23640, Swabi, Khyber Pukhtoonkhawa, Pakistan;Physical Technical Institute of Academy of Sciences, Rudaki Ave. 33, Dushanbe, 734025, Tajikistan;GIK Institute of Engineering Sciences and Technology, Topi 23640, Swabi, Khyber Pukhtoonkhawa, Pakistan;GIK Institute of Engineering Sciences and Technology, Topi 23640, Swabi, Khyber Pukhtoonkhawa, Pakistan;Semiconductor Nano Processing Lab (SNPL), Department of Chemical and Material Engineering,Hanyang University, 1271 Sadong, Sangrok-gu, Ansan-Si, Geyonggi-do, 426-791, Korea
Abstract:This paper investigates the properties of displacement sensors based on polyaniline (PANI) films. About 1 wt% of PANI micropowder is mixed and stirred in a solution of 90 wt% water and 10 wt% alcohol at room temperature. The films of PANI are deposited from solution by drop-casting on Ag electrodes, which are preliminary deposited on glass substrates. The thicknesses of the PANI films are in the range of 20 μm-80 μm. A displacement sensor with polyaniline film as an active material is designed and fabricated. The investigations showed that, on average, the AC resistance of the sensor decreases by 2 times and the capacitance accordingly increases by 1.6 times as the displacement changes in the range of 0 mm-0.5 mm. The polyaniline is the only active material of the displacement sensor. The resistance and capacitance of the PANI changes under the pressure of spring and elastic rubber, and this pressure is created by the downward movement of the micrometer.
Keywords:polyaniline  displacement  sensor  resistance and capacitance
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