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Abstract: The electronic properties of graphene nanoribbons (GNRs) can be precisely tuned by chemical doping. Here we demonstrate that amino (NH2) functional groups attached at the edges of chiral GNRs (chGNRs) can efficiently gate the chGNRs and lead to the valence band (VB) depopulation on a metallic surface. The NH2-doped chGNRs are grown by on-surface synthesis on Au(111) using functionalized bianthracene precursors. Scanning tunneling spectroscopy resolves that the NH2 groups significantly upshift the bands of chGNRs, causing the Fermi level crossing of the VB onset of chGNRs. Through density functional theory simulations we confirm that the hole-doping behavior is due to an upward shift of the bands induced by the edge NH2 groups.
Fuente: ACS Nano, 2020, 14(2), 1895-1901
Editorial: American Chemical Society
Fecha de publicación: 01/10/2020
Nº de páginas: 7
Tipo de publicación: Artículo de Revista
DOI: 10.1021/acsnano.9b08162
ISSN: 1936-0851,1936-086X
Proyecto español: MAT2016-78293-C6
Url de la publicación: https://dx.doi.org/10.1021/acsnano.9b08162?ref=pdf
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LI, JINGCHENG
BRANDIMARTE MENDONÇA, PEDRO
VILAS VARELA, MANUEL
MERINO DÍEZ, NESTOR
CESAR MORENO SIERRA
MUGARZA, AITOR
SÁEZ MOLLEJO, JAIME
SANCHEZ-PORTAL, DANIEL
GARCIA DE OTEYZA, DIMAS
CORSO, MARTINA
GARCIA-LEKUE, ARAN
PEÑA, DIEGO
PASCUAL, JOSÉ I.
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