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Orange dye polyaniline composite based impedance humidity sensors 被引量:3

Orange dye polyaniline composite based impedance humidity sensors
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摘要 This study presents the fabrication and investigation (PANI) composite films. A blend of 3 wt.% OD with 1 of humidity sensors based on orange dye (OD) and polyaniline wt.% PANI was prepared in 1 ml water. The composite films were deposited on glass substrates between pre-deposited silver electrodes. The gap between the electrodes was 45 um. The sensing mechanism was based on the impedance and capacitance variations due to the absorption/desorption of water vapor. It was observed that with the increase in relative humidity (RH) from 30% to 90%, the impedance decreases by 5.2 × 10^4 and 8.8 × 10^3 times for the frequencies of 120 Hz and 1 kHz, respectively. The impedance-humidity relationship showed a more uniform change compared to the capacitance-humidity relationship in the RH range of 30% to 90%. The consequence of annealing, measuring frequency, response and recovery time, and absorption-desorption behavior of the humidity sensor were also discussed in detail. The annealing resulted in an increase in sensitivity of up to 2.5 times, while the measured response time and recovery time were 34 s and 450 s, respectively. The impedance-humidity relationship was simulated. This study presents the fabrication and investigation (PANI) composite films. A blend of 3 wt.% OD with 1 of humidity sensors based on orange dye (OD) and polyaniline wt.% PANI was prepared in 1 ml water. The composite films were deposited on glass substrates between pre-deposited silver electrodes. The gap between the electrodes was 45 um. The sensing mechanism was based on the impedance and capacitance variations due to the absorption/desorption of water vapor. It was observed that with the increase in relative humidity (RH) from 30% to 90%, the impedance decreases by 5.2 × 10^4 and 8.8 × 10^3 times for the frequencies of 120 Hz and 1 kHz, respectively. The impedance-humidity relationship showed a more uniform change compared to the capacitance-humidity relationship in the RH range of 30% to 90%. The consequence of annealing, measuring frequency, response and recovery time, and absorption-desorption behavior of the humidity sensor were also discussed in detail. The annealing resulted in an increase in sensitivity of up to 2.5 times, while the measured response time and recovery time were 34 s and 450 s, respectively. The impedance-humidity relationship was simulated.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第1期161-166,共6页 中国物理B(英文版)
基金 the Higher Education Commission of Pakistan for providing the financial support
关键词 organic-organic composite humidity sensor POLYANILINE orange dye organic-organic composite, humidity sensor, polyaniline, orange dye
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  • 1Fuke M V, Kanitkar P, Kulkarni M, Kale B B and Aiyer R C 2010 Talanta 81 320.
  • 2Chen Z and Lu C 2005 Sens. Letters 3 274.
  • 3Ramaprasad A T and Rao V 2010 Sensor and Actuators B 148 117.
  • 4Nohria R, Khillan R K, Su Y, Dikshit R, Lvov Y and Varahramyan K 2006 Sensor and Actuators B 114 218.
  • 5Huang J R, Li M Q, Huang Z Y and Liu J H 2007 Sensor and Actuators A 133 467.
  • 6Ahmad Z, Sayyad M H, Saleem M, Karimov K S and Shah M 2008 Physica E 41 18.
  • 7Zeng F W, Liu X X, Diamond D and Lau K T 2010 Sensor andActua- tors B 143 530.
  • 8Matsuguchi M, Okamoto A and Sakai Y 2003 Sensor and Actuators B 94 46.
  • 9Palaniappan S and John A 2008 Prog. Polym. Sci. 33 732.
  • 10Huang L M, Chen C H, Wen T C and Gopalan A 2006 Electrochimica Acta 51 2756.

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