Tunneling current modulation in atomically precise graphene nanoribbon heterojunctions

Here, the authors characterize the spectroscopic and transport properties of heterojunctions composed of quasi-metallic and semiconducting graphene nanoribbons (GNRs) with different widths, showing a predominant quantum tunnelling mechanism. The GNR heterojunctions can also be used to realize adsorb...

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Autores principales: Boris V. Senkovskiy, Alexey V. Nenashev, Seyed K. Alavi, Yannic Falke, Martin Hell, Pantelis Bampoulis, Dmitry V. Rybkovskiy, Dmitry Yu. Usachov, Alexander V. Fedorov, Alexander I. Chernov, Florian Gebhard, Klaus Meerholz, Dirk Hertel, Masashi Arita, Taichi Okuda, Koji Miyamoto, Kenya Shimada, Felix R. Fischer, Thomas Michely, Sergei D. Baranovskii, Klas Lindfors, Thomas Szkopek, Alexander Grüneis
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/f401f0d7d8ff49d3811a0fc08e53acda
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spelling oai:doaj.org-article:f401f0d7d8ff49d3811a0fc08e53acda2021-12-02T14:49:23ZTunneling current modulation in atomically precise graphene nanoribbon heterojunctions10.1038/s41467-021-22774-02041-1723https://doaj.org/article/f401f0d7d8ff49d3811a0fc08e53acda2021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22774-0https://doaj.org/toc/2041-1723Here, the authors characterize the spectroscopic and transport properties of heterojunctions composed of quasi-metallic and semiconducting graphene nanoribbons (GNRs) with different widths, showing a predominant quantum tunnelling mechanism. The GNR heterojunctions can also be used to realize adsorbate sensors with high sensitivity.Boris V. SenkovskiyAlexey V. NenashevSeyed K. AlaviYannic FalkeMartin HellPantelis BampoulisDmitry V. RybkovskiyDmitry Yu. UsachovAlexander V. FedorovAlexander I. ChernovFlorian GebhardKlaus MeerholzDirk HertelMasashi AritaTaichi OkudaKoji MiyamotoKenya ShimadaFelix R. FischerThomas MichelySergei D. BaranovskiiKlas LindforsThomas SzkopekAlexander GrüneisNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-11 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Boris V. Senkovskiy
Alexey V. Nenashev
Seyed K. Alavi
Yannic Falke
Martin Hell
Pantelis Bampoulis
Dmitry V. Rybkovskiy
Dmitry Yu. Usachov
Alexander V. Fedorov
Alexander I. Chernov
Florian Gebhard
Klaus Meerholz
Dirk Hertel
Masashi Arita
Taichi Okuda
Koji Miyamoto
Kenya Shimada
Felix R. Fischer
Thomas Michely
Sergei D. Baranovskii
Klas Lindfors
Thomas Szkopek
Alexander Grüneis
Tunneling current modulation in atomically precise graphene nanoribbon heterojunctions
description Here, the authors characterize the spectroscopic and transport properties of heterojunctions composed of quasi-metallic and semiconducting graphene nanoribbons (GNRs) with different widths, showing a predominant quantum tunnelling mechanism. The GNR heterojunctions can also be used to realize adsorbate sensors with high sensitivity.
format article
author Boris V. Senkovskiy
Alexey V. Nenashev
Seyed K. Alavi
Yannic Falke
Martin Hell
Pantelis Bampoulis
Dmitry V. Rybkovskiy
Dmitry Yu. Usachov
Alexander V. Fedorov
Alexander I. Chernov
Florian Gebhard
Klaus Meerholz
Dirk Hertel
Masashi Arita
Taichi Okuda
Koji Miyamoto
Kenya Shimada
Felix R. Fischer
Thomas Michely
Sergei D. Baranovskii
Klas Lindfors
Thomas Szkopek
Alexander Grüneis
author_facet Boris V. Senkovskiy
Alexey V. Nenashev
Seyed K. Alavi
Yannic Falke
Martin Hell
Pantelis Bampoulis
Dmitry V. Rybkovskiy
Dmitry Yu. Usachov
Alexander V. Fedorov
Alexander I. Chernov
Florian Gebhard
Klaus Meerholz
Dirk Hertel
Masashi Arita
Taichi Okuda
Koji Miyamoto
Kenya Shimada
Felix R. Fischer
Thomas Michely
Sergei D. Baranovskii
Klas Lindfors
Thomas Szkopek
Alexander Grüneis
author_sort Boris V. Senkovskiy
title Tunneling current modulation in atomically precise graphene nanoribbon heterojunctions
title_short Tunneling current modulation in atomically precise graphene nanoribbon heterojunctions
title_full Tunneling current modulation in atomically precise graphene nanoribbon heterojunctions
title_fullStr Tunneling current modulation in atomically precise graphene nanoribbon heterojunctions
title_full_unstemmed Tunneling current modulation in atomically precise graphene nanoribbon heterojunctions
title_sort tunneling current modulation in atomically precise graphene nanoribbon heterojunctions
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/f401f0d7d8ff49d3811a0fc08e53acda
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