DocumentCode
578
Title
Scalable Spray Deposition Process for High-Performance Carbon Nanotube Gas Sensors
Author
Abdellah, Alaa ; Abdelhalim, Ahmed ; Horn, Martin ; Scarpa, Giuseppe ; Lugli, Paolo
Author_Institution
Dept. of Electr. Eng. & Inf. Technol., Tech. Univ. Munchen, Munich, Germany
Volume
12
Issue
2
fYear
2013
fDate
Mar-13
Firstpage
174
Lastpage
181
Abstract
A significant step toward commercialization of novel carbon nanotube (CNT) electronics involves the development of large area and high-throughput processes for the fabrication of high-quality CNT films. In this study, we report CNT-based gas sensors with exceptionally high as well as rapid response to various test gases. Highly uniform CNT thin films, prepared using a reliable and reproducible low-cost spray deposition process, are utilized as resistive networks for gas detection. Sensors show a clear and immediate change in resistance as a response to test gas exposure. The high uniformity and low density of the CNT films employed in our chemiresistor provide the means for achieving exceptional response under ambient conditions without any further functionalization, rendering them promising for adoption into a wide range of applications, especially where low-cost room-temperature operation is desired. In an attempt to further reduce production cost, we demonstrate the first implementation of a fully sprayed full-CNT gas sensor on low-cost substrates yielding reasonable device performance.
Keywords
carbon nanotubes; gas sensors; spray coating techniques; thin films; C; CNT film density; CNT thin films; CNT-based gas sensors; carbon nanotube electronics; carbon nanotube gas sensors; chemiresistor; full-CNT gas sensor; gas detection; gas exposure; production cost reduction; resistive networks; spray deposition process; temperature 293 K to 298 K; Films; Gas detectors; Gases; Resistance; Sensitivity; Temperature sensors; Carbon nanotube (CNT) thin films; full CNT; gas sensor; solution processing; spray deposition;
fLanguage
English
Journal_Title
Nanotechnology, IEEE Transactions on
Publisher
ieee
ISSN
1536-125X
Type
jour
DOI
10.1109/TNANO.2013.2238248
Filename
6403915
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