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Novel fabrication of an SnO<sub>2</sub>nanowire gas sensor with high sensitivity

Nanotechnology · 2008 · Vol. 19(9) · pp. 095508–095508
Young-Jin ChoiIn-Sung HwangJae‐Gwan ParkKyoung Jin ChoiJae-Hwan ParkJong‐Heun Lee

Abstract

We fabricated a nanowire-based gas sensor using a simple method of growing SnO(2) nanowires bridging the gap between two pre-patterned Au catalysts, in which the electrical contacts to the nanowires are self-assembled during the synthesis of the nanowires. The gas sensing capability of this network-structured gas sensor was demonstrated using a diluted NO(2). The sensitivity, as a function of temperature, was highest at 200 °C and was determined to be 18 and 180 when the NO(2) concentration was 0.5 and 5 ppm, respectively. Our sensor showed higher sensitivity compared to different types of sensors including SnO(2) powder-based thin films, SnO(2) coating on carbon nanotubes or single/multiple SnO(2) nanobelts. The enhanced sensitivity was attributed to the additional modulation of the sensor resistance due to the potential barrier at nanowire/nanowire junctions as well as the surface depletion region of each nanowire.

Gas Sensing Nanomaterials and SensorsAnalytical Chemistry and SensorsNanowire Synthesis and ApplicationsNanowireMaterials scienceNanotechnologyFabricationBridging (networking)OptoelectronicsCarbon nanotubeSensitivity (control systems)CoatingElectronic engineering

Funding

  • Korea Institute of Science and Technology
Citations
384
FWCI
21.32
field-weighted impact
References
15
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100%
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References
A New Detector for Gaseous Components Using Semiconductive Thin Films.
Analytical Chemistry · 1962 · 1,456 citations
VAPOR-LIQUID-SOLID MECHANISM OF SINGLE CRYSTAL GROWTH
Applied Physics Letters · 1964 · 6,673 citations
Grain size effects on gas sensitivity of porous SnO2-based elements
Sensors and Actuators B Chemical · 1991 · 1,396 citations
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