DocumentCode :
999586
Title :
Low-temperature electronic properties of electrospun PAN-derived carbon nanofiber
Author :
Wang, Yu ; Santiago-Avilés, Jorge J.
Author_Institution :
Dept. of Electr. & Syst. Eng., Univ. of Pennsylvania, Philadelphia, PA, USA
Volume :
3
Issue :
2
fYear :
2004
fDate :
6/1/2004 12:00:00 AM
Firstpage :
221
Lastpage :
224
Abstract :
Although carbon nanofibers might have wide potentials in applications, most of their physical properties have yet to be investigated. This paper reports on the low-temperature electronic transport properties of an electrospun polyacrylonitrile-based carbon nanofiber, with its mean diameters around 120 nm. The resistance of the carbon fiber was measured using the four-point probe method from 295 down to 15 K. The semiconducting nature of the fiber is revealed by its positive temperature coefficient of conductance, i.e., an increase in conductivity with the temperature. The conductivity (σ) depends on temperature according to the relation, σ=5768;T0.338exp(-2×10-6eV/kT), suggesting an almost zero bandgap and a strong temperature dependence of carriers mobility. Such temperature dependence of conductivity is very similar to that found in carbon microfibers, and can be explained using a simple two-band model with temperature-dependent mobility.
Keywords :
carbon fibres; carrier mobility; electrical conductivity; electrical resistivity; energy gap; nanostructured materials; semiconductor materials; C; bandgap; carbon microfibers; carriers mobility; conductivity; electrospun polyacrylonitrile-based carbon nanofiber; four-point probe method; low-temperature electronic transport properties; temperature dependence; temperature-dependent mobility; two-band model; Chemical elements; Conductivity measurement; Electrical resistance measurement; Optical fiber sensors; Probes; Scanning electron microscopy; Systems engineering and theory; Temperature dependence; Temperature sensors; US Department of Transportation; Carbon nanofiber; STB; electrospinning; hopping; low-temperature electronic properties; model; simple two-band model;
fLanguage :
English
Journal_Title :
Nanotechnology, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-125X
Type :
jour
DOI :
10.1109/TNANO.2004.828516
Filename :
1303514
Link To Document :
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