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Updated: Sep 24, 2025

Imine Metathesis by Silica-Supported Catalysts Using the Methodology of Surface Organometallic Chemistry
Published on: October 18, 2019
A Silylene Stabilized by a σ-Donating Nickel(0) Fragment
María Frutos1, Nasrina Parvin1, Antoine Baceiredo1
1Laboratoire Hétérochimie Fondamentale et Appliquée (UMR 5069), Université de Toulouse, CNRS, 118 route de Narbonne, F-31062, Toulouse, France.
A novel silylene complex with a nickel ligand was synthesized. Its unique electronic structure allows for a reversible switch between silylene acting as a donor and nickel acting as a donor, depending on orientation.
Area of Science:
- Organometallic Chemistry
- Silicon Chemistry
- Coordination Chemistry
Background:
- Silylenes are silicon analogues of carbenes with diverse reactivity.
- Stabilized silylenes, particularly those with transition metal ligands, are of significant interest.
- Understanding the electronic interplay between silicon and metal centers is crucial for designing new catalysts and materials.
Purpose of the Study:
- To synthesize and characterize a novel donor-stabilized silylene complex featuring a Ni(0) ligand.
- To investigate the cooperative reactivity between the silicon and nickel centers.
- To explore the influence of ligand orientation on the electronic properties and reactivity of the silylene-metal complex.
Main Methods:
- Synthesis of a new donor-stabilized silylene complex (4).
- Characterization of the complex, including its structural and electronic properties.
- Computational calculations (e.g., DFT) to analyze the electronic structure and bonding.
Main Results:
- Successful synthesis of complex 4, a donor-stabilized silylene with a Ni(0) ligand.
- Complex 4 exhibits a pyramidalized and nucleophilic silicon(II) center.
- Computational studies revealed that a 90° rotation of the Si-Ni bond reverses the electronic roles of the silicon and nickel centers.
Conclusions:
- The synthesized silylene complex displays unique cooperative reactivity due to the interplay of Si and Ni centers.
- Ligand orientation critically dictates whether the nickel fragment acts as a Lewis acid or Lewis base towards the silylene.
- This work demonstrates an unprecedented Ni(0) →silylene complex formation through simple bond rotation, highlighting novel electronic switching capabilities.
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