Confined water-mediated high proton conduction in hydrophobic channel of a synthetic nanotube

Water confined in natural or synthetic hydrophobic nano-spaces behaves differently than in the bulk. Here the authors investigate water in hydrophobic synthetic 1D nanochannels revealing water clustering in tetramers and octamers and high proton conductivity, along with a continuous liquid to solid...

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Autores principales: Ken-ichi Otake, Kazuya Otsubo, Tokutaro Komatsu, Shun Dekura, Jared M. Taylor, Ryuichi Ikeda, Kunihisa Sugimoto, Akihiko Fujiwara, Chien-Pin Chou, Aditya Wibawa Sakti, Yoshifumi Nishimura, Hiromi Nakai, Hiroshi Kitagawa
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/43240538969c472489527a7fcd8159ee
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spelling oai:doaj.org-article:43240538969c472489527a7fcd8159ee2021-12-02T17:31:41ZConfined water-mediated high proton conduction in hydrophobic channel of a synthetic nanotube10.1038/s41467-020-14627-z2041-1723https://doaj.org/article/43240538969c472489527a7fcd8159ee2020-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14627-zhttps://doaj.org/toc/2041-1723Water confined in natural or synthetic hydrophobic nano-spaces behaves differently than in the bulk. Here the authors investigate water in hydrophobic synthetic 1D nanochannels revealing water clustering in tetramers and octamers and high proton conductivity, along with a continuous liquid to solid transition.Ken-ichi OtakeKazuya OtsuboTokutaro KomatsuShun DekuraJared M. TaylorRyuichi IkedaKunihisa SugimotoAkihiko FujiwaraChien-Pin ChouAditya Wibawa SaktiYoshifumi NishimuraHiromi NakaiHiroshi KitagawaNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-7 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ken-ichi Otake
Kazuya Otsubo
Tokutaro Komatsu
Shun Dekura
Jared M. Taylor
Ryuichi Ikeda
Kunihisa Sugimoto
Akihiko Fujiwara
Chien-Pin Chou
Aditya Wibawa Sakti
Yoshifumi Nishimura
Hiromi Nakai
Hiroshi Kitagawa
Confined water-mediated high proton conduction in hydrophobic channel of a synthetic nanotube
description Water confined in natural or synthetic hydrophobic nano-spaces behaves differently than in the bulk. Here the authors investigate water in hydrophobic synthetic 1D nanochannels revealing water clustering in tetramers and octamers and high proton conductivity, along with a continuous liquid to solid transition.
format article
author Ken-ichi Otake
Kazuya Otsubo
Tokutaro Komatsu
Shun Dekura
Jared M. Taylor
Ryuichi Ikeda
Kunihisa Sugimoto
Akihiko Fujiwara
Chien-Pin Chou
Aditya Wibawa Sakti
Yoshifumi Nishimura
Hiromi Nakai
Hiroshi Kitagawa
author_facet Ken-ichi Otake
Kazuya Otsubo
Tokutaro Komatsu
Shun Dekura
Jared M. Taylor
Ryuichi Ikeda
Kunihisa Sugimoto
Akihiko Fujiwara
Chien-Pin Chou
Aditya Wibawa Sakti
Yoshifumi Nishimura
Hiromi Nakai
Hiroshi Kitagawa
author_sort Ken-ichi Otake
title Confined water-mediated high proton conduction in hydrophobic channel of a synthetic nanotube
title_short Confined water-mediated high proton conduction in hydrophobic channel of a synthetic nanotube
title_full Confined water-mediated high proton conduction in hydrophobic channel of a synthetic nanotube
title_fullStr Confined water-mediated high proton conduction in hydrophobic channel of a synthetic nanotube
title_full_unstemmed Confined water-mediated high proton conduction in hydrophobic channel of a synthetic nanotube
title_sort confined water-mediated high proton conduction in hydrophobic channel of a synthetic nanotube
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/43240538969c472489527a7fcd8159ee
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