Room Temperature Ammonia Vapor Sensing Properties of Transparent Single Walled Carbon Nanotube Thin Film

被引:0
|
作者
Shobin, L. R. [1 ]
Manivannan, S. [1 ]
机构
[1] Natl Inst Technol, Carbon Nanomat Lab, Dept Phys, Tiruchirappalli 620015, Tamil Nadu, India
来源
OPTOELECTRONIC DEVICES AND INTEGRATION V | 2014年 / 9270卷
关键词
Carbon nanotubes; Transparent conducting films; Spray coating; Ammonia vapor sensor; Room temperature sensor; GAS; SENSORS;
D O I
10.1117/12.2071830
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Carbon nanotube (CNT) networks are identified as potential substitute and surpass the conventional indium doped tin oxide (ITO) in transparent conducting electrodes, thin-film transistors, solar cells, and chemical sensors. Among them, CNT based gas sensors gained more interest because of its need in environmental monitoring, industrial control, and detection of gases in warfare or for averting security threats. The unique properties of CNT networks such as high surface area, low density, high thermal conductivity and chemical sensitivity making them as a potential candidate for gas sensing applications. Commercial unsorted single walled carbon nanotubes (SWCNT) were purified by thermal oxidation and acid treatment processes and dispersed in organic solvent N-methyl pyrolidone using sonication process in the absence of polymer or surfactant. Optically transparent SWCNT networks are realized on glass substrate by coating the dispersed SWCNT with the help of dynamic spray coating process at 200 degrees C. The SWCNT random network was characterized by scanning electron microscopy and UV-vis-NIR spectroscopy. Gas sensing property of transparent film towards ammonia vapor is studied at room temperature by measuring the resistance change with respect to the concentration in the range 0-1000 ppm. The sensor response is increased logarithmically in the concentration range 0 to 1000 ppm with the detection limit 0.007 ppm. The random networks are able to detect ammonia vapor selectively because of the high electron donating nature of ammonia molecule to the SWCNT. The sensor is reversible and selective to ammonia vapor with response time 70 seconds and recovery time 423 seconds for 62.5 ppm with 90% optical transparency at 550 nm.
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页数:7
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