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Published in: Journal of Materials Science 9/2011

01-05-2011

Compressive stress-electrical conductivity characteristics of multiwall carbon nanotube networks

Authors: P. Slobodian, P. Riha, A. Lengalova, P. Saha

Published in: Journal of Materials Science | Issue 9/2011

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Abstract

A network of entangled multiwall carbon nanotubes is presented as a conductor whose conductivity is sensitive to compressive stress both in the course of monotonic stress growth and when loading/unloading cycles are imposed. The testing has shown as much as 100% network conductivity increase at the maximum applied stress. It indicates favorable properties of multiwall carbon nanotube networks for their use as stress-electric signal transducers. To model the conductivity-stress dependence, it is hypothesized that compression increases local contact forces between nanotubes, which results in more conductive contacts. The lack of detailed knowledge of the mechanism as well as an unclear shift from individual contacts to the whole network conductance behavior is circumvented with a statistical approach. In this respect, good data representation is reached using Weibull distribution for the description of distribution of nanotube contact resistance.

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Metadata
Title
Compressive stress-electrical conductivity characteristics of multiwall carbon nanotube networks
Authors
P. Slobodian
P. Riha
A. Lengalova
P. Saha
Publication date
01-05-2011
Publisher
Springer US
Published in
Journal of Materials Science / Issue 9/2011
Print ISSN: 0022-2461
Electronic ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-010-5202-0

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