Electronic sensitization of the response to C2H5OH of p-type NiO nanofibers by Fe doping

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Pure and 0.18-13.2 at.% Fe-doped NiO nanofibers were prepared by electrospinning and their gas sensing characteristics and microstructural evolution were investigated. The responses ((R-g R-a)/R-a, where R-g is the resistance in gas and R-a is the resistance in air) to 5 ppm C2H5OH, toluene, benzene, p-xylene, HCHO, CO, H-2, and NH3 at 350-500 ffi C were significantly enhanced by Fe doping of the NiO nanofibers, while the responses of pure NiO nanofibers to all the analyte gases were very low ((R-g-R-a)/R-a = 0.07-0.78). In particular, the response to 100 ppm C2H5OH was enhanced up to 217.86 times by doping of NiO nanofibers with 3.04 at.% Fe. The variation in the gas response was closely dependent upon changes in the base resistance of the sensors in air. The enhanced gas response of Fe-doped NiO nanofibers was explained in relation to electronic sensitization, that is, the increase in the chemoresistive variation due to the decrease in the hole concentration induced by Fe doping.
Publisher
IOP PUBLISHING LTD
Issue Date
2013-11
Language
English
Article Type
Article
Keywords

ROOM-TEMPERATURE FERROMAGNETISM; GAS SENSOR TECHNOLOGY; DOPED NIO; RAMAN-SPECTROSCOPY; SENSING PROPERTIES; COMBUSTION METHOD; HOLLOW SPHERES; CATALYSTS; NANOPARTICLES; FILMS

Citation

NANOTECHNOLOGY, v.24, no.44

ISSN
0957-4484
DOI
10.1088/0957-4484/24/44/444005
URI
http://hdl.handle.net/10203/188476
Appears in Collection
MS-Journal Papers(저널논문)
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