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Upgrading non-oxidized carbon nanotubes by thermally decomposed hydrazine
Journal article   Peer reviewed

Upgrading non-oxidized carbon nanotubes by thermally decomposed hydrazine

Pen-Cheng Wang, Yu-Chun Liao, Li-Hung Liu, Yu-Ling Lai, Ying-Chang Lin and Yao-Jane Hsu
Applied Surface Science, Vol.305, pp.46-54
30/06/2014

Abstract

Aziridine Carbon nanotube Chemical scavenging Graphene Hydrazine Nitrene
We found that the electrical properties of conductive thin films based on non-oxidized carbon nanotubes (CNTs) could be further improved when the CNTs consecutively underwent a mild hydrazine adsorption treatment and then a sufficiently effective thermal desorption treatment. We also found that, after several rounds of vapor-phase hydrazine treatments and baking treatments were applied to an inferior single-CNT field-effect transistor device, the device showed improvement in I on /I off ratio and reduction in the extent of gate-sweeping hysteresis. Our experimental results indicate that, even though hydrazine is a well-known reducing agent, the characteristics of our hydrazine-exposed CNT samples subject to certain treatment conditions could become more graphenic than graphanic, suggesting that the improvement in the electrical and electronic properties of CNT samples could be related to the transient bonding and chemical scavenging of thermally decomposed hydrazine on the surface of CNTs. © 2014 Elsevier B.V.

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