DocumentCode :
657025
Title :
Electrical and humidity-sensing characterization of inkjet-printed multi-walled carbon nanotubes for smart packaging
Author :
Yi Feng ; Li Xie ; Mantysalo, Matti ; Qiang Chen ; Li-Rong Zheng
Author_Institution :
iPack Vinn Excellence Center, KTH (R. Inst. of Technol.), Stockholm, Sweden
fYear :
2013
fDate :
3-6 Nov. 2013
Firstpage :
1
Lastpage :
4
Abstract :
Printing is considered a cost-effective way to fabricate electronics on unconventional substrates enabling, for example, smart packaging. Functionalized multi-walled carbon nanotubes (f-MWCNTs) having carboxylic groups on their surfaces possess great potential as flexible resistive humidity sensor. In this paper, we report on the inkjet printing and characterization of f-MWCNTs in terms of sheet resistance and humidity-sensitivity. Stable f-MWCNTs ink is formulated using aqueous ethylene glycol as solvent. Sheet resistance of printed f-MWCNTs films on polyimide foil reduces by increasing the number of printed layers as well as post-printing annealing temperature. Meanwhile, the raised annealing temperature degrades the films´ humidity-sensitivity, which could be explained by the loss of the carboxylic groups. The electrical and sensing properties of f-MWCNTs also have a negative temperature coefficient regarding ambient temperature, which should be considered in practical application.
Keywords :
annealing; carbon nanotubes; electric resistance; electric sensing devices; electronics packaging; humidity sensors; ink jet printing; intelligent sensors; nanoelectronics; nanofabrication; nanosensors; polymer films; thin film sensors; C; ambient temperature; aqueous ethylene glycol; carboxylic group; electrical sensing characterization; electronics fabrication; flexible resistive humidity sensor; functional multiwalled carbon nanotube; humidity sensitivity; inkjet printing; negative temperature coefficient; polyimide foil; postprinting annealing temperature; printed f-MWCNT film; printed layer; sheet resistance; smart packaging; Annealing; Films; Humidity; Resistance; Resistors; Temperature measurement; Temperature sensors;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
SENSORS, 2013 IEEE
Conference_Location :
Baltimore, MD
ISSN :
1930-0395
Type :
conf
DOI :
10.1109/ICSENS.2013.6688306
Filename :
6688306
Link To Document :
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