International audienceWe have investigated the role played by the atomic structure and reactivity of the supporting Ag(111) and Cu(111) surfaces on the formation of 2D metal−organic networks (2D-MONs) involving metal adatom clusters spawned by these two surfaces. While the hexahydroxytriphenylene (HHTP) molecule forms complexes with Ag 3 and Cu 3 adatom clusters on, respectively, the Ag(111) and Cu(111) surfaces, an extended order is only observed in the 2D-MON on Ag(111). By combining scanning tunneling microscopy measurements, density functional theory calculations, and microscopy image simulations, we show that the formation of Ag−HHTP metal−organic complexes is structurally compatible with a periodic arrangement of HHTP on the Ag(111) s...
Two-dimensional metal–organic nanostructures based on the binding of ketone groups and metal atoms w...
The adsorption, chemical nature, and self-assembly of diaminotriazinyl- and carboxyl-substituted tri...
Two-dimensional metal-organic nanostructures based on the binding of ketone groups and metal atoms w...
International audienceWe have investigated the role played by the atomic structure and reactivity of...
We study the formation of a coordination network consisting of the organic pyridine-based 2,4,6-tris...
We study the formation of a coordination network consisting of the organic pyridine-based 2,4,6-tris...
We describe the formation of lanthanide–organic coordination networks and complexes under ultra-high...
International audienceThe formation of highly organized structures based on two ligands with pyridyl...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
We describe the formation of lanthanide-organic coordination networks and complexes under ultra-high...
The interplay between self‐assembly and surface chemistry of 2,3,6,7,10,11‐hexaminotriphenylene (HAT...
Two-dimensional metal-organic nanostructures based on the binding of ketone groups and metal atoms w...
The adsorption, chemical nature, and self-assembly of diaminotriazinyl- and carboxyl-substituted tri...
The controlled formation of non-covalent bonds (H-bonding, metal-ligand interactions) is the key ing...
Two-dimensional metal–organic nanostructures based on the binding of ketone groups and metal atoms w...
The adsorption, chemical nature, and self-assembly of diaminotriazinyl- and carboxyl-substituted tri...
Two-dimensional metal-organic nanostructures based on the binding of ketone groups and metal atoms w...
International audienceWe have investigated the role played by the atomic structure and reactivity of...
We study the formation of a coordination network consisting of the organic pyridine-based 2,4,6-tris...
We study the formation of a coordination network consisting of the organic pyridine-based 2,4,6-tris...
We describe the formation of lanthanide–organic coordination networks and complexes under ultra-high...
International audienceThe formation of highly organized structures based on two ligands with pyridyl...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
We describe the formation of lanthanide-organic coordination networks and complexes under ultra-high...
The interplay between self‐assembly and surface chemistry of 2,3,6,7,10,11‐hexaminotriphenylene (HAT...
Two-dimensional metal-organic nanostructures based on the binding of ketone groups and metal atoms w...
The adsorption, chemical nature, and self-assembly of diaminotriazinyl- and carboxyl-substituted tri...
The controlled formation of non-covalent bonds (H-bonding, metal-ligand interactions) is the key ing...
Two-dimensional metal–organic nanostructures based on the binding of ketone groups and metal atoms w...
The adsorption, chemical nature, and self-assembly of diaminotriazinyl- and carboxyl-substituted tri...
Two-dimensional metal-organic nanostructures based on the binding of ketone groups and metal atoms w...