DocumentCode :
2411792
Title :
Single wall carbon nanotubes for conductive wiring
Author :
Schauerman, Christopher M. ; Alvarenga, Jack ; Ganter, Matthew J. ; Seager, Thomas P. ; Landi, Brian J. ; Raffaelle, Ryne P.
Author_Institution :
Rochester Inst. of Technol., Rochester, NY, USA
fYear :
2009
fDate :
18-20 May 2009
Firstpage :
1
Lastpage :
5
Abstract :
The scarcity of ore and environmental intensity of copper production creates a strong incentive to explore alternative materials for conducting electricity. Single-walled carbon nanotubes (SWCNT) rely on plentiful feedstock materials (i.e., graphite) and exhibit high theoretical conductivity on a per mass basis. However, bulk conductivities measured at the laboratory scale indicate further improvements in carbon nanotube ribbons and wires are necessary to create a competitive alternative. This paper investigates methods for improving the conductivity of SWCNT ribbons and wires. As-produced SWCNT material was synthesized from pulsed laser vaporization of doped graphite targets. The resulting as-produced material was purified in excess of 95%, based on optical absorption spectroscopy, and fabricated into free-standing buckypapers without the aid of polymer or binders. Nearly an order of magnitude increase in conductivity was achieved for mechanical densification of SWCNT wires. Chemical doping of SWCNT papers with nitric acid resulted in an increase in electrical conductivity from 2.7 x 104 S/m to 1 x 106 S/m.
Keywords :
carbon nanotubes; copper; densification; wires; conductive wiring; copper production; densiflcation; graphite targets; nanomaterials; optical absorption spectroscopy; pulsed laser vaporization; ribbons; single wall carbon nanotubes; Carbon nanotubes; Conducting materials; Conductivity; Copper; Optical materials; Optical polymers; Organic materials; Production; Wires; Wiring; SWCNT; conductivity; densification; nanomaterials; single wall carbon nanotube; wire;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Sustainable Systems and Technology, 2009. ISSST '09. IEEE International Symposium on
Conference_Location :
Phoenix, AZ
Print_ISBN :
978-1-4244-4324-6
Type :
conf
DOI :
10.1109/ISSST.2009.5156759
Filename :
5156759
Link To Document :
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