Title :
High temperature operable low humidity (10 to 20%RH) sensor using spin coated SnO2 thin films
Author :
Kori, Pramod ; Dhongade, Vipul ; Aiyer, R.C.
Author_Institution :
Dept. of Electron. Sci., Savitribai Phule Pune Univ., Pune, India
Abstract :
The paper presents Tin oxide (SnO2) based low cost, high temperature operable resistive type low humidity (10-20%RH) sensor. SnO2 thin films were prepared by spin coating 50 μl of synthesized (SnCl2) solution on alumina substrate (1.44 cm2). Material characterization of the synthesized material was carried out using UV-Visible, SEM and XRD. To get films of higher thickness they were coated from 1 to 4 layers and annealed in the furnace at an optimized temperature of 550°C for ~1 hour. Obtained SnO2 thin films were tested for change in resistance w.r.t. humidity from 10 to 20% RH at 200°C and 300°C to be used in boilers. Samples have low hysteresis (~12%) with recovery time of about ~10 sec. They have shown good repeatability (5%). The sensitivity of tested films was found to increase with respect to number of SnO2 layers. Sensitivity of 2 layered film operating at 200°C is 146 Ω/%RH and that of 4 layered film is 314 Ω/%RH, likewise at 300 °C the sensitivity of the films are 165 Ω/%RH and 323 Ω/%RH respectively.
Keywords :
X-ray diffraction; humidity sensors; scanning electron microscopy; semiconductor thin films; spin coating; tin compounds; ultraviolet spectra; visible spectra; Al2O3; SEM; SnO2; UV-Visible spectroscopy; XRD; alumina substrate; annealing; film thickness; high temperature operable low humidity sensor; hysteresis; recovery time; repeatability; resistance; sensitivity; spin coated thin films; temperature 200 degC to 550 degC; Films; Humidity; Sensitivity; Sensor phenomena and characterization; Temperature measurement; Temperature sensors; high temperature operable; low humidity; sensor; spin coating; tin oxide;
Conference_Titel :
Physics and Technology of Sensors (ISPTS), 2015 2nd International Symposium on
Conference_Location :
Pune
DOI :
10.1109/ISPTS.2015.7220112