Multimodal switching of a redox-active macrocycle

Molecules that can switch between multiple stable states in response to stimuli are promising for many applications, but are challenging to construct. Here, the authors design a resorcinarene switching manifold with multiple oxidation states and coupled charge-transfer states, which can access up to...

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Autores principales: Daniel T. Payne, Whitney A. Webre, Yoshitaka Matsushita, Nianyong Zhu, Zdenĕk Futera, Jan Labuta, Wipakorn Jevasuwan, Naoki Fukata, John S. Fossey, Francis D’Souza, Katsuhiko Ariga, Wolfgang Schmitt, Jonathan P. Hill
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/8c90602b192a41a78876b89a99a9ac13
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spelling oai:doaj.org-article:8c90602b192a41a78876b89a99a9ac132021-12-02T14:39:03ZMultimodal switching of a redox-active macrocycle10.1038/s41467-019-08978-52041-1723https://doaj.org/article/8c90602b192a41a78876b89a99a9ac132019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08978-5https://doaj.org/toc/2041-1723Molecules that can switch between multiple stable states in response to stimuli are promising for many applications, but are challenging to construct. Here, the authors design a resorcinarene switching manifold with multiple oxidation states and coupled charge-transfer states, which can access up to five distinct switch-states with unique optical outputs.Daniel T. PayneWhitney A. WebreYoshitaka MatsushitaNianyong ZhuZdenĕk FuteraJan LabutaWipakorn JevasuwanNaoki FukataJohn S. FosseyFrancis D’SouzaKatsuhiko ArigaWolfgang SchmittJonathan P. HillNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-9 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Daniel T. Payne
Whitney A. Webre
Yoshitaka Matsushita
Nianyong Zhu
Zdenĕk Futera
Jan Labuta
Wipakorn Jevasuwan
Naoki Fukata
John S. Fossey
Francis D’Souza
Katsuhiko Ariga
Wolfgang Schmitt
Jonathan P. Hill
Multimodal switching of a redox-active macrocycle
description Molecules that can switch between multiple stable states in response to stimuli are promising for many applications, but are challenging to construct. Here, the authors design a resorcinarene switching manifold with multiple oxidation states and coupled charge-transfer states, which can access up to five distinct switch-states with unique optical outputs.
format article
author Daniel T. Payne
Whitney A. Webre
Yoshitaka Matsushita
Nianyong Zhu
Zdenĕk Futera
Jan Labuta
Wipakorn Jevasuwan
Naoki Fukata
John S. Fossey
Francis D’Souza
Katsuhiko Ariga
Wolfgang Schmitt
Jonathan P. Hill
author_facet Daniel T. Payne
Whitney A. Webre
Yoshitaka Matsushita
Nianyong Zhu
Zdenĕk Futera
Jan Labuta
Wipakorn Jevasuwan
Naoki Fukata
John S. Fossey
Francis D’Souza
Katsuhiko Ariga
Wolfgang Schmitt
Jonathan P. Hill
author_sort Daniel T. Payne
title Multimodal switching of a redox-active macrocycle
title_short Multimodal switching of a redox-active macrocycle
title_full Multimodal switching of a redox-active macrocycle
title_fullStr Multimodal switching of a redox-active macrocycle
title_full_unstemmed Multimodal switching of a redox-active macrocycle
title_sort multimodal switching of a redox-active macrocycle
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/8c90602b192a41a78876b89a99a9ac13
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