On-surface synthesis, complementary to wet chemistry, has been demonstrated to be a valid approach for the synthesis of tailored graphenic nanostructures with atomic precision. Among the different existing strategies used to tune the optoelectronic and magnetic properties of these nanostructures, the introduction of non-hexagonal rings inducing out-of-plane distortions is a promising pathway that has been scarcely explored on surfaces. Here, we demonstrate that non-hexagonal rings, in the form of tropone (cycloheptatrienone) moieties, are thermally transformed into phenyl or cyclopentadienone moieties upon an unprecedented surface-mediated retro–Buchner-type reaction involving a decarbonylation or an intramolecular rearrangement of the CO u...
UNLABELLED On-surface synthesis is a rapidly developing field involving chemical reactions on wel...
This is the peer reviewed version of the following article: Angewandte Chemie - International Editio...
Fusion of three benzene rings in a triangular fashion gives rise to the smallest open-shell graphene...
[EN] On-surface synthesis, complementary to wet chemistry, has been demonstrated to be a valid appro...
Graphene nanoribbons (GNRs) have potential for applications in electronic devices. A key issue, ther...
The formation of two types of nanographenes from custom designed and synthesized molecular precursor...
The atomically precise control over the size, shape and structure of nanographenes (NGs) or the intr...
Graphene nanoribbons (GNRs) can be synthesized with atomic precision through on-surface chemistry of...
The atomically precise control over the size, shape and structure of nanographenes (NGs) or the intr...
The advent of on-surface chemistry under vacuum has vastly increased our capabilities to synthesize ...
Highly distorted polycyclic aromatic hydrocarbons (PAHs) are predicted to be attractive goals in nan...
The atomistic understanding of the dissociation mechanisms for large molecules adsorbed on surfaces ...
The advent of on-surface chemistry under vacuum has vastly increased our capabilities to synthesize ...
On-surface synthesis provides an effective approach toward the formation of graphene nanostructures ...
The on-surface coupling of the prototypical precursor molecule for graphene nanoribbon synthesis, 6,...
UNLABELLED On-surface synthesis is a rapidly developing field involving chemical reactions on wel...
This is the peer reviewed version of the following article: Angewandte Chemie - International Editio...
Fusion of three benzene rings in a triangular fashion gives rise to the smallest open-shell graphene...
[EN] On-surface synthesis, complementary to wet chemistry, has been demonstrated to be a valid appro...
Graphene nanoribbons (GNRs) have potential for applications in electronic devices. A key issue, ther...
The formation of two types of nanographenes from custom designed and synthesized molecular precursor...
The atomically precise control over the size, shape and structure of nanographenes (NGs) or the intr...
Graphene nanoribbons (GNRs) can be synthesized with atomic precision through on-surface chemistry of...
The atomically precise control over the size, shape and structure of nanographenes (NGs) or the intr...
The advent of on-surface chemistry under vacuum has vastly increased our capabilities to synthesize ...
Highly distorted polycyclic aromatic hydrocarbons (PAHs) are predicted to be attractive goals in nan...
The atomistic understanding of the dissociation mechanisms for large molecules adsorbed on surfaces ...
The advent of on-surface chemistry under vacuum has vastly increased our capabilities to synthesize ...
On-surface synthesis provides an effective approach toward the formation of graphene nanostructures ...
The on-surface coupling of the prototypical precursor molecule for graphene nanoribbon synthesis, 6,...
UNLABELLED On-surface synthesis is a rapidly developing field involving chemical reactions on wel...
This is the peer reviewed version of the following article: Angewandte Chemie - International Editio...
Fusion of three benzene rings in a triangular fashion gives rise to the smallest open-shell graphene...