Quasi one-dimensional band dispersion and surface metallization in long-range ordered polymeric wires

Polymerization on surfaces is an emerging approach for producing graphene nanoribbons with a tunable bandgap, a promising material for carbon-based electronics. Here, Vasseur et al.show quasi-one-dimensional band structure of a model semiconducting polymer synthesized directly on a supporting surfac...

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Autores principales: Guillaume Vasseur, Yannick Fagot-Revurat, Muriel Sicot, Bertrand Kierren, Luc Moreau, Daniel Malterre, Luis Cardenas, Gianluca Galeotti, Josh Lipton-Duffin, Federico Rosei, Marco Di Giovannantonio, Giorgio Contini, Patrick Le Fèvre, François Bertran, Liangbo Liang, Vincent Meunier, Dmitrii F. Perepichka
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/e7a8be96b1b3485b8991dffdc8aa46c3
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spelling oai:doaj.org-article:e7a8be96b1b3485b8991dffdc8aa46c32021-12-02T15:34:58ZQuasi one-dimensional band dispersion and surface metallization in long-range ordered polymeric wires10.1038/ncomms102352041-1723https://doaj.org/article/e7a8be96b1b3485b8991dffdc8aa46c32016-01-01T00:00:00Zhttps://doi.org/10.1038/ncomms10235https://doaj.org/toc/2041-1723Polymerization on surfaces is an emerging approach for producing graphene nanoribbons with a tunable bandgap, a promising material for carbon-based electronics. Here, Vasseur et al.show quasi-one-dimensional band structure of a model semiconducting polymer synthesized directly on a supporting surface.Guillaume VasseurYannick Fagot-RevuratMuriel SicotBertrand KierrenLuc MoreauDaniel MalterreLuis CardenasGianluca GaleottiJosh Lipton-DuffinFederico RoseiMarco Di GiovannantonioGiorgio ContiniPatrick Le FèvreFrançois BertranLiangbo LiangVincent MeunierDmitrii F. PerepichkaNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Guillaume Vasseur
Yannick Fagot-Revurat
Muriel Sicot
Bertrand Kierren
Luc Moreau
Daniel Malterre
Luis Cardenas
Gianluca Galeotti
Josh Lipton-Duffin
Federico Rosei
Marco Di Giovannantonio
Giorgio Contini
Patrick Le Fèvre
François Bertran
Liangbo Liang
Vincent Meunier
Dmitrii F. Perepichka
Quasi one-dimensional band dispersion and surface metallization in long-range ordered polymeric wires
description Polymerization on surfaces is an emerging approach for producing graphene nanoribbons with a tunable bandgap, a promising material for carbon-based electronics. Here, Vasseur et al.show quasi-one-dimensional band structure of a model semiconducting polymer synthesized directly on a supporting surface.
format article
author Guillaume Vasseur
Yannick Fagot-Revurat
Muriel Sicot
Bertrand Kierren
Luc Moreau
Daniel Malterre
Luis Cardenas
Gianluca Galeotti
Josh Lipton-Duffin
Federico Rosei
Marco Di Giovannantonio
Giorgio Contini
Patrick Le Fèvre
François Bertran
Liangbo Liang
Vincent Meunier
Dmitrii F. Perepichka
author_facet Guillaume Vasseur
Yannick Fagot-Revurat
Muriel Sicot
Bertrand Kierren
Luc Moreau
Daniel Malterre
Luis Cardenas
Gianluca Galeotti
Josh Lipton-Duffin
Federico Rosei
Marco Di Giovannantonio
Giorgio Contini
Patrick Le Fèvre
François Bertran
Liangbo Liang
Vincent Meunier
Dmitrii F. Perepichka
author_sort Guillaume Vasseur
title Quasi one-dimensional band dispersion and surface metallization in long-range ordered polymeric wires
title_short Quasi one-dimensional band dispersion and surface metallization in long-range ordered polymeric wires
title_full Quasi one-dimensional band dispersion and surface metallization in long-range ordered polymeric wires
title_fullStr Quasi one-dimensional band dispersion and surface metallization in long-range ordered polymeric wires
title_full_unstemmed Quasi one-dimensional band dispersion and surface metallization in long-range ordered polymeric wires
title_sort quasi one-dimensional band dispersion and surface metallization in long-range ordered polymeric wires
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/e7a8be96b1b3485b8991dffdc8aa46c3
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