Electrical Transport and Magnetoresistance in Single-Wall Carbon Nanotubes Films
Electrical transport properties and magnetoresistance of single-wall carbon nanotubes (SWCNT) films were investigated within temperature range (2 – 300) K and in magnetic fields up to 8 T. A crossover between metallic (dR/dT > 0) and non-metallic (dR/dT < 0) temperature dependence of t...
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Kaunas University of Technology
2014-06-01
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doaj-00d0c91dc54d4d3ba10e498cdec545cf2020-11-25T00:11:00ZengKaunas University of TechnologyMedžiagotyra1392-13202029-72892014-06-0120212612810.5755/j01.ms.20.2.63113152Electrical Transport and Magnetoresistance in Single-Wall Carbon Nanotubes FilmsVitaly KSENEVICH0Mikhail SHUBA1Alesia PADDUBSKAYA2Department of Physics, Belarusian State UniversityInstitute for Nuclear Problems, Belarusian State UniversityInstitute for Nuclear Problems, Belarusian State UniversityElectrical transport properties and magnetoresistance of single-wall carbon nanotubes (SWCNT) films were investigated within temperature range (2 – 300) K and in magnetic fields up to 8 T. A crossover between metallic (dR/dT > 0) and non-metallic (dR/dT < 0) temperature dependence of the resistance as well as low-temperature saturation of the resistance in high bias regime indicated on the diminishing of role of the contact barriers between individual nanotubes essential for the charge transport in SWCNT arrays. The magnetoresistance (MR) data demonstrated influence of weak localization and electron-electron interactions on charge transport properties in SWCNT films. The low-field negative MR with positive upturn was observed at low temperatures. At T > 10 K only negative MR was observed in the whole range of available magnetic fields. The negative MR can be approximated using 1D weak localization (WL) model. The low temperature positive MR is induced by contribution from electron-electron interactions. <p>DOI: <a href="http://dx.doi.org/10.5755/j01.ms.20.2.6311">http://dx.doi.org/10.5755/j01.ms.20.2.6311</a></p>http://matsc.ktu.lt/index.php/MatSc/article/view/6311carbon nanotubescharge transportmagnetoresistanceweak localizationelectron-electron interaction |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Vitaly KSENEVICH Mikhail SHUBA Alesia PADDUBSKAYA |
spellingShingle |
Vitaly KSENEVICH Mikhail SHUBA Alesia PADDUBSKAYA Electrical Transport and Magnetoresistance in Single-Wall Carbon Nanotubes Films Medžiagotyra carbon nanotubes charge transport magnetoresistance weak localization electron-electron interaction |
author_facet |
Vitaly KSENEVICH Mikhail SHUBA Alesia PADDUBSKAYA |
author_sort |
Vitaly KSENEVICH |
title |
Electrical Transport and Magnetoresistance in Single-Wall Carbon Nanotubes Films |
title_short |
Electrical Transport and Magnetoresistance in Single-Wall Carbon Nanotubes Films |
title_full |
Electrical Transport and Magnetoresistance in Single-Wall Carbon Nanotubes Films |
title_fullStr |
Electrical Transport and Magnetoresistance in Single-Wall Carbon Nanotubes Films |
title_full_unstemmed |
Electrical Transport and Magnetoresistance in Single-Wall Carbon Nanotubes Films |
title_sort |
electrical transport and magnetoresistance in single-wall carbon nanotubes films |
publisher |
Kaunas University of Technology |
series |
Medžiagotyra |
issn |
1392-1320 2029-7289 |
publishDate |
2014-06-01 |
description |
Electrical transport properties and magnetoresistance of single-wall carbon nanotubes (SWCNT) films were investigated within temperature range (2 – 300) K and in magnetic fields up to 8 T. A crossover between metallic (dR/dT > 0) and non-metallic (dR/dT < 0) temperature dependence of the resistance as well as low-temperature saturation of the resistance in high bias regime indicated on the diminishing of role of the contact barriers between individual nanotubes essential for the charge transport in SWCNT arrays. The magnetoresistance (MR) data demonstrated influence of weak localization and electron-electron interactions on charge transport properties in SWCNT films. The low-field negative MR with positive upturn was observed at low temperatures. At T > 10 K only negative MR was observed in the whole range of available magnetic fields. The negative MR can be approximated using 1D weak localization (WL) model. The low temperature positive MR is induced by contribution from electron-electron interactions. <p>DOI: <a href="http://dx.doi.org/10.5755/j01.ms.20.2.6311">http://dx.doi.org/10.5755/j01.ms.20.2.6311</a></p> |
topic |
carbon nanotubes charge transport magnetoresistance weak localization electron-electron interaction |
url |
http://matsc.ktu.lt/index.php/MatSc/article/view/6311 |
work_keys_str_mv |
AT vitalyksenevich electricaltransportandmagnetoresistanceinsinglewallcarbonnanotubesfilms AT mikhailshuba electricaltransportandmagnetoresistanceinsinglewallcarbonnanotubesfilms AT alesiapaddubskaya electricaltransportandmagnetoresistanceinsinglewallcarbonnanotubesfilms |
_version_ |
1725405768745746432 |