Bundle vs. network conductivity of carbon nanotubes separated by type
Abstract
We report wide-range optical investigations on transparent conducting networks made from separated (semiconducting, metallic) and reference (mixed) single-walled carbon nanotubes, complemented by transport measurements. Comparing the intrinsic frequency-dependent conductivity of the nanotubes with that of the networks, we conclude that higher intrinsic conductivity results in better transport properties, indicating that the properties of the nanotubes are at least as much important as the contacts. We find that HNO3 doping offers a larger improvement in transparent conductive quality than separation. Spontaneous dedoping occurs in all samples but is most effective in films made of doped metallic tubes, where the sheet conductance returns close to its original value within 24 hours.
Cite
@article{arxiv.1302.3343,
title = {Bundle vs. network conductivity of carbon nanotubes separated by type},
author = {H. M. Tohati and A. Pekker and B. A. Pataki and Zs. Szekrenyes and K. Kamaras},
journal= {arXiv preprint arXiv:1302.3343},
year = {2015}
}
Comments
11 pages, 6 figures