We present electronic structure calculations based on a single-parameter plane wave expansion method for basic graphene building blocks, namely n-oligophenylenes and n-oligoacenes, revealing excellent agreement with density-functional theory. When oligophenylene molecules are joined through meta (zigzag) or ortho (chevron) junctions, the resulting molecular dimers and polymers exhibit a semiconducting character. While zigzag dimers of oligoacenes also exhibit gapped electronic structures, their chevron-phase features a sharp metallic band at the Fermi energy. This zero-point-energy state, which transforms into Dirac-like band in chevron polymers, survives at the outer elbows of the dimer irrespective of the molecular length, and has the sam...
Topological theory has been recently applied in graphene nanoribbons (GNRs) and predicts the existen...
none8siOligorylenes have been the focus of research during the journey toward intrinsically conducti...
Graphenoids are nanometer-sized flakes that share the same honeycomb framework of graphene. Novel ch...
Within recent years, allotropic structures of carbon have been produced in the forms of tubes and ri...
Resumen del trabajo presentado a la Conferencia bienal Fuerzas y Túnel, celebrada en Jaca (España) d...
© 2022 American Physical Society. In cove-edged zigzag graphene nanoribbons (ZGNR-Cs), one terminal ...
Theoretical methods were first screened and validated with available experimental data on convention...
The general objective of the research project is to study the electronic properties of graphene nan...
Ab initio calculations, based on the planewave pseudopotential method and the density functional the...
Resumen del trabajo presentado al International workshop On-Surface Synthesis (OSS), celebrado en Sa...
The electronic properties of a new type of carbon nanotube, based on the graphenylene motif, are inv...
Surface-assisted polymerization of molecular monomers into extended chains can be used as the seed o...
We present a systematic density functional theory study of the electronic properties, optical spectr...
Graphene nanoribbons (GNRs) have recently been shown by Cao, Zhao, and Louie [Cao, T.; Zhao, F.; Lou...
Up to now, “bottom-up” synthesis has mainly focused on armchair-edged PAHs, whereas PAHs with cove-t...
Topological theory has been recently applied in graphene nanoribbons (GNRs) and predicts the existen...
none8siOligorylenes have been the focus of research during the journey toward intrinsically conducti...
Graphenoids are nanometer-sized flakes that share the same honeycomb framework of graphene. Novel ch...
Within recent years, allotropic structures of carbon have been produced in the forms of tubes and ri...
Resumen del trabajo presentado a la Conferencia bienal Fuerzas y Túnel, celebrada en Jaca (España) d...
© 2022 American Physical Society. In cove-edged zigzag graphene nanoribbons (ZGNR-Cs), one terminal ...
Theoretical methods were first screened and validated with available experimental data on convention...
The general objective of the research project is to study the electronic properties of graphene nan...
Ab initio calculations, based on the planewave pseudopotential method and the density functional the...
Resumen del trabajo presentado al International workshop On-Surface Synthesis (OSS), celebrado en Sa...
The electronic properties of a new type of carbon nanotube, based on the graphenylene motif, are inv...
Surface-assisted polymerization of molecular monomers into extended chains can be used as the seed o...
We present a systematic density functional theory study of the electronic properties, optical spectr...
Graphene nanoribbons (GNRs) have recently been shown by Cao, Zhao, and Louie [Cao, T.; Zhao, F.; Lou...
Up to now, “bottom-up” synthesis has mainly focused on armchair-edged PAHs, whereas PAHs with cove-t...
Topological theory has been recently applied in graphene nanoribbons (GNRs) and predicts the existen...
none8siOligorylenes have been the focus of research during the journey toward intrinsically conducti...
Graphenoids are nanometer-sized flakes that share the same honeycomb framework of graphene. Novel ch...