Title :
Porosity modification for the adjustment of the dynamic range of ceramic humidity sensors
Author :
Hossein-Babaei, Faramarz ; Rahbarpour, Saeedeh
Author_Institution :
Electr. Eng. Dept., K.N. Toosi Univ. of Technol., Tehran
fDate :
Nov. 30 2008-Dec. 3 2008
Abstract :
The effect of the change of porosity and pore-size distribution on the sensitivity and the dynamic range of the rutile-based resistive humidity sensors is reported. Bead-type resistive humidity sensors were fabricated by the sintering of the rutile powder aggregates on the two adjacent platinum wires at 800degC. Porosity modifications were carried out in two different directions: Sol-gel impregnation of the titanium dioxide into the porous structure of the ceramic bead followed by an annealing at 500degC decreased the micron-sized pores and increased the proportion of the nano-sized pores, while re-sintering of the pallets at 1000degC eliminated the fine pores and increased the population of the micron-sized pores. Sensitivity measurements showed a shift of the useful dynamic range of the sensor towards lower relative humidity (RH) range (0-20 %) in the first group, while the second group demonstrated better performance at the higher RH range (60-100 %). It was shown that the ceramic sensors of desired RH dynamic range can be fabrication based on the pallets of predetermined pore-size distribution.
Keywords :
annealing; ceramics; humidity measurement; humidity sensors; sintering; sol-gel processing; titanium compounds; TiO2; annealing; ceramic humidity sensors; dynamic range; platinum wires; pore-size distribution; porosity modification; relative humidity; rutile powder aggregates; rutile-based resistive humidity sensors; sensitivity measurements; sintering; sol-gel impregnation; temperature 500 degC; temperature 800 degC; Aggregates; Annealing; Ceramics; Dynamic range; Fabrication; Humidity measurement; Platinum; Powders; Titanium; Wires; Dynamic Range; Humidity Sensor; Pore Size Distribution; Porosity; Sol-Gel Impregnation; Titanium Dioxide;
Conference_Titel :
Sensing Technology, 2008. ICST 2008. 3rd International Conference on
Conference_Location :
Tainan
Print_ISBN :
978-1-4244-2176-3
Electronic_ISBN :
978-1-4244-2177-0
DOI :
10.1109/ICSENST.2008.4757185