On-surface synthesis of aligned functional nanoribbons monitored by scanning tunnelling microscopy and vibrational spectroscopy

On-surface synthesis, in which molecular units assemble and couple on a defined surface, can access rare reaction pathways and products. Here, the authors synthesize functionalized organic nanoribbons on the Ag(110) surface, and monitor the evolution of the covalent reactions by an unorthodox vibrat...

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Autores principales: Nataliya Kalashnyk, Kawtar Mouhat, Jihun Oh, Jaehoon Jung, Yangchun Xie, Eric Salomon, Thierry Angot, Frédéric Dumur, Didier Gigmes, Sylvain Clair
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/920ac7ccff1e47fba719794c5734c640
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spelling oai:doaj.org-article:920ac7ccff1e47fba719794c5734c6402021-12-02T17:01:22ZOn-surface synthesis of aligned functional nanoribbons monitored by scanning tunnelling microscopy and vibrational spectroscopy10.1038/ncomms147352041-1723https://doaj.org/article/920ac7ccff1e47fba719794c5734c6402017-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms14735https://doaj.org/toc/2041-1723On-surface synthesis, in which molecular units assemble and couple on a defined surface, can access rare reaction pathways and products. Here, the authors synthesize functionalized organic nanoribbons on the Ag(110) surface, and monitor the evolution of the covalent reactions by an unorthodox vibrational spectroscopy approach.Nataliya KalashnykKawtar MouhatJihun OhJaehoon JungYangchun XieEric SalomonThierry AngotFrédéric DumurDidier GigmesSylvain ClairNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-9 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Nataliya Kalashnyk
Kawtar Mouhat
Jihun Oh
Jaehoon Jung
Yangchun Xie
Eric Salomon
Thierry Angot
Frédéric Dumur
Didier Gigmes
Sylvain Clair
On-surface synthesis of aligned functional nanoribbons monitored by scanning tunnelling microscopy and vibrational spectroscopy
description On-surface synthesis, in which molecular units assemble and couple on a defined surface, can access rare reaction pathways and products. Here, the authors synthesize functionalized organic nanoribbons on the Ag(110) surface, and monitor the evolution of the covalent reactions by an unorthodox vibrational spectroscopy approach.
format article
author Nataliya Kalashnyk
Kawtar Mouhat
Jihun Oh
Jaehoon Jung
Yangchun Xie
Eric Salomon
Thierry Angot
Frédéric Dumur
Didier Gigmes
Sylvain Clair
author_facet Nataliya Kalashnyk
Kawtar Mouhat
Jihun Oh
Jaehoon Jung
Yangchun Xie
Eric Salomon
Thierry Angot
Frédéric Dumur
Didier Gigmes
Sylvain Clair
author_sort Nataliya Kalashnyk
title On-surface synthesis of aligned functional nanoribbons monitored by scanning tunnelling microscopy and vibrational spectroscopy
title_short On-surface synthesis of aligned functional nanoribbons monitored by scanning tunnelling microscopy and vibrational spectroscopy
title_full On-surface synthesis of aligned functional nanoribbons monitored by scanning tunnelling microscopy and vibrational spectroscopy
title_fullStr On-surface synthesis of aligned functional nanoribbons monitored by scanning tunnelling microscopy and vibrational spectroscopy
title_full_unstemmed On-surface synthesis of aligned functional nanoribbons monitored by scanning tunnelling microscopy and vibrational spectroscopy
title_sort on-surface synthesis of aligned functional nanoribbons monitored by scanning tunnelling microscopy and vibrational spectroscopy
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/920ac7ccff1e47fba719794c5734c640
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