A metal–metal bond between coordination complexes has the nature of a covalent bond in hydrocarbons. While bimetallic and trimetallic compounds usually have three-dimensional structures in solution, the high directionality and robustness of the bond can be applied for on-surface syntheses. Here, we present a systematic formation of complex organometallic oligomers on Cu(111) through sequential ring opening of 11,11,12,12-tetraphenyl-1,4,5,8-tetraazaanthraquinodimethane and bonding of phenanthroline derivatives by multiple Cu atoms. A detailed characterization with a combination of scanning tunneling microscopy and density functional theory calculations revealed the role of the Cu adatoms in both enantiomers of the chiral oligomers. Further...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
The formation, structure, and dynamics of planar organometallic macrocycles (<i>meta</i>-terphenyl-C...
A metal–metal bond between coordination complexes has the nature of a covalent bond in hydrocarbons....
We study the formation of a coordination network consisting of the organic pyridine-based 2,4,6-tris...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
The design of organometallic complexes is at the heart of modern organic chemistry and catalysis. Re...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
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 studied the supramolecular assembly of a multifunctional ligand, cis-bis-terpyridine tetraphenyl ...
We report the formation of one- and two-dimensional metal–organic coordination structures from para-...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
We employed a de novo synthesized porphyrin module to construct one-dimensional (1D) Cu-coordinated ...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
The formation, structure, and dynamics of planar organometallic macrocycles (<i>meta</i>-terphenyl-C...
A metal–metal bond between coordination complexes has the nature of a covalent bond in hydrocarbons....
We study the formation of a coordination network consisting of the organic pyridine-based 2,4,6-tris...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
The design of organometallic complexes is at the heart of modern organic chemistry and catalysis. Re...
The bonds in metal organic networks on surfaces govern the resulting geometry as well as the electro...
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 studied the supramolecular assembly of a multifunctional ligand, cis-bis-terpyridine tetraphenyl ...
We report the formation of one- and two-dimensional metal–organic coordination structures from para-...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
We employed a de novo synthesized porphyrin module to construct one-dimensional (1D) Cu-coordinated ...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
We report on the formation of chiral domains self-assembled from terephthalic acid (TPA) and iron on...
The formation, structure, and dynamics of planar organometallic macrocycles (<i>meta</i>-terphenyl-C...