We describe the formation of lanthanide–organic coordination networks and complexes under ultra-high-vacuum conditions on a clean Ag(100) surface. The structures comprise single Ho atoms as coordination centers and 1,4-benzenedicarboxylate (from terephtalic acid, TPA) as molecular linkers. Using low-temperature scanning tunneling microscopy, we find two different chiral phases of surface-supported metal–organic structures incorporating Ho atoms. Density functional theory calculations can explain the structure of both binding motifs and give possible reasons for their varying formation under the respective Ho/TPA ratios, as well as deposition and annealing temperatures. Metal–ligand interactions drive the formation of cloverleaf-shaped monon...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
We report a combined scanning tunneling microscopy and density functional theory study on the format...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
We describe the formation of lanthanide–organic coordination networks and complexes under ultra-high...
We describe the formation of lanthanide-organic coordination networks and complexes under ultra-high...
International audienceWe have investigated the role played by the atomic structure and reactivity of...
The controlled formation of non-covalent bonds (H-bonding, metal-ligand interactions) is the key ing...
The engineering of highly organized molecular architectures has attracted strong interest because of...
We present a comprehensive investigation of the modular assembly of surface-supported metal-organic ...
Paper presented at the 31st European Conference on Surface Science (eccos 31), held in Barcelona (Sp...
Lanthanide-based metal-organic compounds and architectures are promising systems for sensing, hetero...
We report the construction of complex metal-organic assemblies at surfaces using concepts from coord...
Abstract The study of lanthanide (Ln)-transition-metal (TM) heterometallic clusters which play key r...
This thesis deals with the self-organization of individual building blocks, specifically organic mol...
Coordination chemistry relies on harnessing active metal sites within organic matrices. Polynuclear ...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
We report a combined scanning tunneling microscopy and density functional theory study on the format...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
We describe the formation of lanthanide–organic coordination networks and complexes under ultra-high...
We describe the formation of lanthanide-organic coordination networks and complexes under ultra-high...
International audienceWe have investigated the role played by the atomic structure and reactivity of...
The controlled formation of non-covalent bonds (H-bonding, metal-ligand interactions) is the key ing...
The engineering of highly organized molecular architectures has attracted strong interest because of...
We present a comprehensive investigation of the modular assembly of surface-supported metal-organic ...
Paper presented at the 31st European Conference on Surface Science (eccos 31), held in Barcelona (Sp...
Lanthanide-based metal-organic compounds and architectures are promising systems for sensing, hetero...
We report the construction of complex metal-organic assemblies at surfaces using concepts from coord...
Abstract The study of lanthanide (Ln)-transition-metal (TM) heterometallic clusters which play key r...
This thesis deals with the self-organization of individual building blocks, specifically organic mol...
Coordination chemistry relies on harnessing active metal sites within organic matrices. Polynuclear ...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
We report a combined scanning tunneling microscopy and density functional theory study on the format...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...