Ubiquitous organic molecule-based free-standing nanowires with ultra-high aspect ratios

Extension of nanostructure fabrication in the single-nm regime is a promising but fabrication of nanostructures with high aspect ratios remains challenging. Here, the authors use high energy charged particles to produce free-standing 1D organic nanostructures with extremely high aspect ratios and co...

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Autores principales: Koshi Kamiya, Kazuto Kayama, Masaki Nobuoka, Shugo Sakaguchi, Tsuneaki Sakurai, Minori Kawata, Yusuke Tsutsui, Masayuki Suda, Akira Idesaki, Hiroshi Koshikawa, Masaki Sugimoto, G. B. V. S. Lakshmi, D. K. Avasthi, Shu Seki
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/2a9ddefa82ca4ea2976815ef3130d1f2
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spelling oai:doaj.org-article:2a9ddefa82ca4ea2976815ef3130d1f22021-12-02T16:10:47ZUbiquitous organic molecule-based free-standing nanowires with ultra-high aspect ratios10.1038/s41467-021-24335-x2041-1723https://doaj.org/article/2a9ddefa82ca4ea2976815ef3130d1f22021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24335-xhttps://doaj.org/toc/2041-1723Extension of nanostructure fabrication in the single-nm regime is a promising but fabrication of nanostructures with high aspect ratios remains challenging. Here, the authors use high energy charged particles to produce free-standing 1D organic nanostructures with extremely high aspect ratios and controlled number density.Koshi KamiyaKazuto KayamaMasaki NobuokaShugo SakaguchiTsuneaki SakuraiMinori KawataYusuke TsutsuiMasayuki SudaAkira IdesakiHiroshi KoshikawaMasaki SugimotoG. B. V. S. LakshmiD. K. AvasthiShu SekiNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-11 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Koshi Kamiya
Kazuto Kayama
Masaki Nobuoka
Shugo Sakaguchi
Tsuneaki Sakurai
Minori Kawata
Yusuke Tsutsui
Masayuki Suda
Akira Idesaki
Hiroshi Koshikawa
Masaki Sugimoto
G. B. V. S. Lakshmi
D. K. Avasthi
Shu Seki
Ubiquitous organic molecule-based free-standing nanowires with ultra-high aspect ratios
description Extension of nanostructure fabrication in the single-nm regime is a promising but fabrication of nanostructures with high aspect ratios remains challenging. Here, the authors use high energy charged particles to produce free-standing 1D organic nanostructures with extremely high aspect ratios and controlled number density.
format article
author Koshi Kamiya
Kazuto Kayama
Masaki Nobuoka
Shugo Sakaguchi
Tsuneaki Sakurai
Minori Kawata
Yusuke Tsutsui
Masayuki Suda
Akira Idesaki
Hiroshi Koshikawa
Masaki Sugimoto
G. B. V. S. Lakshmi
D. K. Avasthi
Shu Seki
author_facet Koshi Kamiya
Kazuto Kayama
Masaki Nobuoka
Shugo Sakaguchi
Tsuneaki Sakurai
Minori Kawata
Yusuke Tsutsui
Masayuki Suda
Akira Idesaki
Hiroshi Koshikawa
Masaki Sugimoto
G. B. V. S. Lakshmi
D. K. Avasthi
Shu Seki
author_sort Koshi Kamiya
title Ubiquitous organic molecule-based free-standing nanowires with ultra-high aspect ratios
title_short Ubiquitous organic molecule-based free-standing nanowires with ultra-high aspect ratios
title_full Ubiquitous organic molecule-based free-standing nanowires with ultra-high aspect ratios
title_fullStr Ubiquitous organic molecule-based free-standing nanowires with ultra-high aspect ratios
title_full_unstemmed Ubiquitous organic molecule-based free-standing nanowires with ultra-high aspect ratios
title_sort ubiquitous organic molecule-based free-standing nanowires with ultra-high aspect ratios
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/2a9ddefa82ca4ea2976815ef3130d1f2
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