DocumentCode :
1763629
Title :
Quartz Crystal Microbalance Humidity Sensors Based on Nanodiamond Sensing Films
Author :
Yao Yao ; Xiangdong Chen ; Wenying Ma ; Weiwei Ling
Author_Institution :
Dept. of Commun. Eng., Chengdu Univ. of Inf. Technol., Chengdu, China
Volume :
13
Issue :
2
fYear :
2014
fDate :
41699
Firstpage :
386
Lastpage :
393
Abstract :
A novel quartz crystal microbalance (QCM) humidity sensor using nanodiamond (ND) as sensing films has been presented in this paper. For evaluating the performance of ND-coated QCM humidity sensor, a series of humidity-sensing experiments were carried out by using both oscillating circuit and impedance analysis methods. Based on the large specific surface area and high mechanical modulus, the ND-coated sensor exhibited large humidity-sensing response and good stability. In addition, the resultant sensors displayed low hysteresis, good repeatability, and short response time. The influence of the depositing amount of ND on the sensor´s performance has also been discussed. The result indicated that the stability of QCM humidity sensor showed an extreme decrease when the deposition amount of ND on QCM is large enough. The possible reason for this anomalous phenomenon is analyzed and discussed. This study suggests that ND could be a promising candidate material for developing high-performance QCM humidity sensor.
Keywords :
diamond; humidity sensors; nanosensors; nanostructured materials; quartz crystal microbalances; thin film sensors; C; ND-coated QCM humidity sensor; high-performance QCM humidity sensor; hysteresis; impedance analysis methods; mechanical modulus; nanodiamond sensing films; oscillating circuit; quartz crystal microbalance humidity sensors; short response time; specific surface area; Films; Humidity; Resonant frequency; Sensor phenomena and characterization; Viscosity; Humidity sensor; impedance analysis; nanodiamond; quartz crystal microbalance; stability;
fLanguage :
English
Journal_Title :
Nanotechnology, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-125X
Type :
jour
DOI :
10.1109/TNANO.2014.2305986
Filename :
6739107
Link To Document :
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