We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair graphene nanoribbons of N = 7 carbon atoms width periodically doped by substitutional boron atoms (B-7AGNRs). Using angle-resolved photoemission spectroscopy and density functional theory calculations, we find that the dopant-derived valence and conduction band states are notably hybridized with electronic states of Au substrate and spread in energy. The interaction with the substrate leaves the bands with pure carbon character rather unperturbed. This results in an identical effective mass of approximate to 0.2 m(0) for the next-highest valence band compared with pristine 7AGNRs. We probe the phonons of B-7AGNRs by ultrahigh-vacuum ...
Bottom-up approaches allow the production of ultranarrow and atomically precise graphene nanoribbons...
Bottom-up chemical reactions of selected molecular precursors on a gold surface can produce high qua...
Boron- and nitrogen-doped graphenes are are prepared by the arc discharge between carbon electrodes ...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair ...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We show that strong chemical interaction between boron doped graphene nanoribbons with N = 7 atoms w...
Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the stru...
Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the stru...
High-quality graphene nanoribbons (GNRs) grown by on-surface synthesis strategies with atomic precis...
Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the stru...
A fundamental requirement for the development of advanced electronic device architectures based on g...
A fundamental requirement for the development of advanced electronic device architectures based on g...
Bottom-up approaches allow the production of ultranarrow and atomically precise graphene nanoribbons...
Bottom-up chemical reactions of selected molecular precursors on a gold surface can produce high qua...
Boron- and nitrogen-doped graphenes are are prepared by the arc discharge between carbon electrodes ...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair ...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We investigate the electronic and vibrational properties of bottom-up synthesized aligned armchair g...
We show that strong chemical interaction between boron doped graphene nanoribbons with N = 7 atoms w...
Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the stru...
Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the stru...
High-quality graphene nanoribbons (GNRs) grown by on-surface synthesis strategies with atomic precis...
Bottom-up fabrication techniques enable atomically precise integration of dopant atoms into the stru...
A fundamental requirement for the development of advanced electronic device architectures based on g...
A fundamental requirement for the development of advanced electronic device architectures based on g...
Bottom-up approaches allow the production of ultranarrow and atomically precise graphene nanoribbons...
Bottom-up chemical reactions of selected molecular precursors on a gold surface can produce high qua...
Boron- and nitrogen-doped graphenes are are prepared by the arc discharge between carbon electrodes ...