| Literature DB >> 22573982 |
Litao Liu1, Xiongying Ye, Kang Wu, Rui Han, Zhaoying Zhou, Tianhong Cui.
Abstract
This paper presents an investigation on the humidity sensitivity of deposited multi-walled carbon nanotube (MWCNT) networks using ac dielectrophoresis (DEP) between interdigitated electrodes (IDEs). MWCNTs dispersed in ethanol were trapped and enriched between IDEs on a Si/SiO(2) substrate under a positive DEP force. After the DEP process, the ethanol was evaporated and the MWCNT network on a substrate with IDEs was put into a furnace for repeated thermal annealing. It was found that the resistance stability of the network was effectively improved through thermal annealing. The humidity sensitivity was obtained by measuring the resistance of the MWCNT network with different relative humidity at room temperature. The experimental results show the resistance increases linearly with increasing the relative humidity from 25% to 95% RH with a sensitivity of 0.5%/%RH. The MWCNT networks have a reversible humidity sensing capacity with response time and recovery time of about 3 s and 25 s, respectively. The resistance is dependent on temperature with a negative coefficient of about -0.33%/K in a temperature range from 293 K to 393 K.Entities:
Keywords: Dielectrophoresis; Humidity sensitivity; Multi-walled carbon nanotubes; Thermal annealing
Year: 2009 PMID: 22573982 PMCID: PMC3345853 DOI: 10.3390/s90301714
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1.Schematic diagram of MWCNT deposition on IDEs by ac dielectrophoresis.
Figure 2.SEM image of a MWCNT network between interdigitated electrodes.
Figure 3.Room-temperature resistance of a MWCNT network during ten repeated annealing cycles and the resistance recorded daily after annealing.
Figure 4.Resistance-relative humidity data and linear fit of a MWCNT network obtained at room temperature.
Figure 5.Time response and recovery curve of the MWCNT network from RH=25 % to 75 %.
Figure 6.Temperature dependence of the resistance of the MWCNT network.