DocumentCode :
4044
Title :
A Printable CNT-Based FM Passive Wireless Sensor Tag on a Flexible Substrate With Enhanced Sensitivity
Author :
Yunfeng Ling ; Hongtao Zhang ; Guiru Gu ; Xuejun Lu ; Kayastha, Vijaya ; Jones, Carissa S. ; Wu-Sheng Shih ; Janzen, Daniel C.
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Massachusetts, Lowell, MA, USA
Volume :
14
Issue :
4
fYear :
2014
fDate :
Apr-14
Firstpage :
1193
Lastpage :
1197
Abstract :
In this paper, we report a frequency-modulated (FM) passive wireless sensor tag for ammonia (NH3) sensing. The passive wireless sensor tag consists of a single-walled carbon nanotube (SWCNT) network based NH3 sensor, a radio frequency antenna, a ring oscillator, and other supporting circuits. The SWCNT network-based NH3 sensor is fabricated on a flexible plastic substrate through printable processes. The printable SWCNT-based NH3 sensor shows an enhanced sensitivity of 0.76% per part per million primarily due to the large surface area of the SWCNT network. The sensor also exhibits a high linearity between the resistance of the sensor and logarithm of the NH3 concentration (referred to as log [NH3] henceforth). A simple FM circuit is designed to convert the resistance change of the sensor to the oscillating frequency shift of the circuit. By properly designing the circuit, we have obtained a linear response between the frequency shift and log [NH3]. The linear response allows one to precisely predict the NH3 concentration by measuring the frequency shift of the FM wireless sensor tag. Such an FM-modulated passive wireless sensor tag with linear response and enhanced sensitivity is promising for power-less stand-alone low-level NH3 sensing and monitoring with high accuracy.
Keywords :
ammonia; carbon nanotubes; chemical variables measurement; frequency measurement; frequency modulation; gas sensors; microwave antennas; nanofabrication; nanosensors; printing; radiofrequency identification; radiofrequency oscillators; wireless sensor networks; C; NH3; NH3 concentration prediction; flexible plastic substrate; frequency modulation; gas sensor; linear response; monitoring; oscillating frequency shift measurement; power less standalone low level NH3 sensor; printable CNT-based FM passive wireless sensor tag; printable SWCNT network-based NH3 sensor fabrication; radio frequency antenna; ring oscillator; simple FM circuit design; single walled carbon nanotube; Carbon nanotubes; Frequency modulation; Resistance; Ring oscillators; Wireless communication; Wireless sensor networks; Carbon nanotube (CNT); ammonia $({rm NH}_{3})$; gas sensor; wireless sensor;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2013.2281197
Filename :
6595128
Link To Document :
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