Macroscopic weavable fibers of carbon nanotubes with giant thermoelectric power factor

Preserving the large power factor of carbon nanotubes is challenging, due to poor sample morphology and a lack of proper Fermi energy tuning. Here, the authors achieve a value of power factor of 14 ± 5 mW m−1 K−2 originating from the preserved conductivity and the ability to tune Fermi energy....

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Autores principales: Natsumi Komatsu, Yota Ichinose, Oliver S. Dewey, Lauren W. Taylor, Mitchell A. Trafford, Yohei Yomogida, Geoff Wehmeyer, Matteo Pasquali, Kazuhiro Yanagi, Junichiro Kono
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/79515acdedb9433ba671a276f373a06f
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spelling oai:doaj.org-article:79515acdedb9433ba671a276f373a06f2021-12-02T18:50:59ZMacroscopic weavable fibers of carbon nanotubes with giant thermoelectric power factor10.1038/s41467-021-25208-z2041-1723https://doaj.org/article/79515acdedb9433ba671a276f373a06f2021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25208-zhttps://doaj.org/toc/2041-1723Preserving the large power factor of carbon nanotubes is challenging, due to poor sample morphology and a lack of proper Fermi energy tuning. Here, the authors achieve a value of power factor of 14 ± 5 mW m−1 K−2 originating from the preserved conductivity and the ability to tune Fermi energy.Natsumi KomatsuYota IchinoseOliver S. DeweyLauren W. TaylorMitchell A. TraffordYohei YomogidaGeoff WehmeyerMatteo PasqualiKazuhiro YanagiJunichiro KonoNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Natsumi Komatsu
Yota Ichinose
Oliver S. Dewey
Lauren W. Taylor
Mitchell A. Trafford
Yohei Yomogida
Geoff Wehmeyer
Matteo Pasquali
Kazuhiro Yanagi
Junichiro Kono
Macroscopic weavable fibers of carbon nanotubes with giant thermoelectric power factor
description Preserving the large power factor of carbon nanotubes is challenging, due to poor sample morphology and a lack of proper Fermi energy tuning. Here, the authors achieve a value of power factor of 14 ± 5 mW m−1 K−2 originating from the preserved conductivity and the ability to tune Fermi energy.
format article
author Natsumi Komatsu
Yota Ichinose
Oliver S. Dewey
Lauren W. Taylor
Mitchell A. Trafford
Yohei Yomogida
Geoff Wehmeyer
Matteo Pasquali
Kazuhiro Yanagi
Junichiro Kono
author_facet Natsumi Komatsu
Yota Ichinose
Oliver S. Dewey
Lauren W. Taylor
Mitchell A. Trafford
Yohei Yomogida
Geoff Wehmeyer
Matteo Pasquali
Kazuhiro Yanagi
Junichiro Kono
author_sort Natsumi Komatsu
title Macroscopic weavable fibers of carbon nanotubes with giant thermoelectric power factor
title_short Macroscopic weavable fibers of carbon nanotubes with giant thermoelectric power factor
title_full Macroscopic weavable fibers of carbon nanotubes with giant thermoelectric power factor
title_fullStr Macroscopic weavable fibers of carbon nanotubes with giant thermoelectric power factor
title_full_unstemmed Macroscopic weavable fibers of carbon nanotubes with giant thermoelectric power factor
title_sort macroscopic weavable fibers of carbon nanotubes with giant thermoelectric power factor
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/79515acdedb9433ba671a276f373a06f
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AT yotaichinose macroscopicweavablefibersofcarbonnanotubeswithgiantthermoelectricpowerfactor
AT oliversdewey macroscopicweavablefibersofcarbonnanotubeswithgiantthermoelectricpowerfactor
AT laurenwtaylor macroscopicweavablefibersofcarbonnanotubeswithgiantthermoelectricpowerfactor
AT mitchellatrafford macroscopicweavablefibersofcarbonnanotubeswithgiantthermoelectricpowerfactor
AT yoheiyomogida macroscopicweavablefibersofcarbonnanotubeswithgiantthermoelectricpowerfactor
AT geoffwehmeyer macroscopicweavablefibersofcarbonnanotubeswithgiantthermoelectricpowerfactor
AT matteopasquali macroscopicweavablefibersofcarbonnanotubeswithgiantthermoelectricpowerfactor
AT kazuhiroyanagi macroscopicweavablefibersofcarbonnanotubeswithgiantthermoelectricpowerfactor
AT junichirokono macroscopicweavablefibersofcarbonnanotubeswithgiantthermoelectricpowerfactor
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