Hierarchical on-surface synthesis and electronic structure of carbonyl-functionalized one- and two-dimensional covalent nanoarchitectures

On-surface synthesis is an excellent tool for the controlled synthesis of tailored nanomaterials. Here, the authors hierarchically synthesize covalent structures on Au(111) through Ullmann-type coupling of triphenylamines, forming macrocycles, 1D chains, and 2D networks, allowing them to study the e...

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Autores principales: Christian Steiner, Julian Gebhardt, Maximilian Ammon, Zechao Yang, Alexander Heidenreich, Natalie Hammer, Andreas Görling, Milan Kivala, Sabine Maier
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/2467e0716eb94c218e66ffab4cb1ea50
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spelling oai:doaj.org-article:2467e0716eb94c218e66ffab4cb1ea502021-12-02T14:41:08ZHierarchical on-surface synthesis and electronic structure of carbonyl-functionalized one- and two-dimensional covalent nanoarchitectures10.1038/ncomms147652041-1723https://doaj.org/article/2467e0716eb94c218e66ffab4cb1ea502017-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms14765https://doaj.org/toc/2041-1723On-surface synthesis is an excellent tool for the controlled synthesis of tailored nanomaterials. Here, the authors hierarchically synthesize covalent structures on Au(111) through Ullmann-type coupling of triphenylamines, forming macrocycles, 1D chains, and 2D networks, allowing them to study the effect of dimensionality on electronic band gap.Christian SteinerJulian GebhardtMaximilian AmmonZechao YangAlexander HeidenreichNatalie HammerAndreas GörlingMilan KivalaSabine MaierNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-11 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Christian Steiner
Julian Gebhardt
Maximilian Ammon
Zechao Yang
Alexander Heidenreich
Natalie Hammer
Andreas Görling
Milan Kivala
Sabine Maier
Hierarchical on-surface synthesis and electronic structure of carbonyl-functionalized one- and two-dimensional covalent nanoarchitectures
description On-surface synthesis is an excellent tool for the controlled synthesis of tailored nanomaterials. Here, the authors hierarchically synthesize covalent structures on Au(111) through Ullmann-type coupling of triphenylamines, forming macrocycles, 1D chains, and 2D networks, allowing them to study the effect of dimensionality on electronic band gap.
format article
author Christian Steiner
Julian Gebhardt
Maximilian Ammon
Zechao Yang
Alexander Heidenreich
Natalie Hammer
Andreas Görling
Milan Kivala
Sabine Maier
author_facet Christian Steiner
Julian Gebhardt
Maximilian Ammon
Zechao Yang
Alexander Heidenreich
Natalie Hammer
Andreas Görling
Milan Kivala
Sabine Maier
author_sort Christian Steiner
title Hierarchical on-surface synthesis and electronic structure of carbonyl-functionalized one- and two-dimensional covalent nanoarchitectures
title_short Hierarchical on-surface synthesis and electronic structure of carbonyl-functionalized one- and two-dimensional covalent nanoarchitectures
title_full Hierarchical on-surface synthesis and electronic structure of carbonyl-functionalized one- and two-dimensional covalent nanoarchitectures
title_fullStr Hierarchical on-surface synthesis and electronic structure of carbonyl-functionalized one- and two-dimensional covalent nanoarchitectures
title_full_unstemmed Hierarchical on-surface synthesis and electronic structure of carbonyl-functionalized one- and two-dimensional covalent nanoarchitectures
title_sort hierarchical on-surface synthesis and electronic structure of carbonyl-functionalized one- and two-dimensional covalent nanoarchitectures
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/2467e0716eb94c218e66ffab4cb1ea50
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AT juliangebhardt hierarchicalonsurfacesynthesisandelectronicstructureofcarbonylfunctionalizedoneandtwodimensionalcovalentnanoarchitectures
AT maximilianammon hierarchicalonsurfacesynthesisandelectronicstructureofcarbonylfunctionalizedoneandtwodimensionalcovalentnanoarchitectures
AT zechaoyang hierarchicalonsurfacesynthesisandelectronicstructureofcarbonylfunctionalizedoneandtwodimensionalcovalentnanoarchitectures
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AT sabinemaier hierarchicalonsurfacesynthesisandelectronicstructureofcarbonylfunctionalizedoneandtwodimensionalcovalentnanoarchitectures
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