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Binding Interactions in Copper, Silver and Gold π-Complexes
Jaya Mehara1, Brandon T Watson2, Anurag Noonikara-Poyil2
1Department of Spectroscopy and Catalysis, Institute for Molecules and Materials, Radboud University Nijmegen, Heyendaalseweg 135, 6525 AJ, Nijmegen (The, Netherlands.
Copper, silver, and gold complexes bind π-ligands through σ-bonding and π-back bonding. π-back bonding is dominant in copper and gold, with binding energies increasing for silver, copper, and gold.
Area of Science:
- Organometallic Chemistry
- Coordination Chemistry
- Spectroscopy
Background:
- Copper(I), silver(I), and gold(I) metals form complexes with π-ligands.
- These interactions involve both σ-donation and π-back bonding.
- Ancillary ligands with varying electronic properties are used to study these bonds.
Purpose of the Study:
- To investigate the σ-bonding and π-back bonding interactions in copper(I), silver(I), and gold(I) complexes with π-ligands.
- To determine how ancillary ligand substituents influence metal-ligand binding.
- To compare binding affinities across different metals and ligand types (alkenes vs. alkynes).
Main Methods:
- Synthesis of copper(I), silver(I), and gold(I) complexes with bidentate ancillary ligands.
- X-ray crystallography to determine molecular structures.
- Nuclear Magnetic Resonance (NMR) and Infrared (IR) spectroscopy for electronic analysis.
- Gas-phase experiments to measure binding energies.
Main Results:
- Binding energies increase in the order Silver < Copper < Gold.
- Binding energies are slightly higher for alkynes compared to alkenes.
- π-back bonding significantly influences binding in copper and gold complexes, modulated by ancillary ligand substituents.
Conclusions:
- The electronic properties of ancillary ligands critically affect metal-ligand interactions in these complexes.
- π-back bonding is a dominant factor in the stability of copper and gold π-complexes.
- The study provides insights into the fundamental bonding principles governing coinage metal π-complexes.
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