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Preparation and Reactivity of a Triphosphenium Bromide Salt: A Convenient and Stable Source of Phosphorus(I)
Published on: November 22, 2016
Phosphorus-phosphorus coupling in a diphosphine with a ten bond P...P separation
1Laboratoire de Chimie Inorganique Moléculaire, LC 3 CNRS-Université Louis Pasteur, 1 rue Blaise Pascal, F-67008 Strasbourg cedex, France.
A novel diphosphine calixarene ligand was synthesized, featuring phosphorus atoms separated by ten bonds. This unique structure enables through-space coupling and facile complexation with palladium, showcasing its potential in coordination chemistry.
Area of Science:
- Supramolecular Chemistry
- Organometallic Chemistry
- Coordination Chemistry
Background:
- Calixarenes are versatile macrocyclic hosts with tunable properties.
- Diphosphine ligands are crucial in catalysis and coordination chemistry.
- Achieving specific spatial arrangements of functional groups on calixarenes is synthetically challenging.
Purpose of the Study:
- To synthesize a large, unsymmetrical diphosphine calixarene.
- To investigate the structural and electronic properties of the synthesized diphosphine.
- To explore the coordination behavior of the diphosphine with transition metals.
Main Methods:
- Monobenzoylation and reduction of a precursor calixarene.
- X-ray crystallography for molecular structure determination.
- Nuclear Magnetic Resonance (NMR) spectroscopy for solution-state analysis.
- Complexation studies with palladium.
Main Results:
- Successful synthesis of the unsymmetrical diphosphine calixarene.
- X-ray crystallography confirmed phosphorus atom separation of 5.333(1) Å.
- NMR revealed a significant through-space J(PP") coupling constant of 8.0 Hz.
- Calixarene exhibited conformational mobility in solution.
- Facile formation of a cis-chelate palladium complex.
Conclusions:
- The synthesized diphosphine calixarene possesses a unique structure with proximate phosphorus atoms.
- Through-space coupling and conformational dynamics were observed.
- The ligand readily forms stable complexes, indicating its utility in organometallic chemistry.
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