학술논문

Humidity Sensing Behaviour of Nanocrystalline α-PbO Synthesized by Alcohol Thermal Process
Document Type
article
Source
Sensors & Transducers, Vol 122, Iss 11, Pp 20-27 (2010)
Subject
α-PbO
Humidity sensor
Low temperature sensor
TEM
Alcohol thermal method
Technology (General)
T1-995
Language
English
ISSN
2306-8515
1726-5479
Abstract
Alcohol thermal route has been used to synthesize meta stable nanocrystalline α-PbO at a relatively low temperature of 75 oC using lead acetate. The synthesized α-PbO (P75) was subjected to different heat treatment with temperatures ranging from 200-500 oC for 2 h to study the effect of crystallinity and phase changes and were labeled as P200, P300, P400 and P500, respectively. X-Ray diffraction and FT-IR spectroscopy were carried out to identify the structural phases and vibrational stretching frequencies respectively. The TEM images revealed the porous nature of P75 sample which is an important criterion for the humidity sensor. All the samples were subjected to different humidity levels (5 – 98 %). Among the different composites prepared, P75 possessed the highest humidity sensitivity of 5000, while the heat treated sample P500 possessed a low sensitivity of 127. The response and recovery characteristics of the maximum sensitivity sample P75 were 210 s and 140 s respectively.