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Updated: May 11, 2026

Palladium N-Heterocyclic Carbene Complexes: Synthesis from Benzimidazolium Salts and Catalytic Activity in Carbon-carbon Bond-forming Reactions
Published on: July 30, 2017
Reactivity of Lewis basic platinum complexes towards fluoroboranes
Jürgen Bauer1, Holger Braunschweig, Rian D Dewhurst
1Institut für Anorganische Chemie, Julius-Maximilians-Universität Würzburg, Am Hubland, 97074 Würzburg, Germany.
This study explores interactions between Lewis acidic fluoroboranes and platinum complexes, revealing Lewis adducts and their products. The research also applies frustrated Lewis pair (FLP) concepts to activate ethene, with DFT calculations aiding mechanistic insights.
Area of Science:
- Organometallic Chemistry
- Lewis Acid-Base Interactions
- Computational Chemistry
Background:
- Platinum complexes and fluoroboranes are key components in catalysis.
- Understanding Lewis acid-base adducts is crucial for developing new chemical transformations.
- Frustrated Lewis pairs (FLPs) offer novel pathways for small molecule activation.
Purpose of the Study:
- To investigate the interactions between Lewis acidic fluoroboranes and Lewis basic platinum complexes.
- To characterize the resulting Lewis adducts and their secondary products.
- To explore the application of FLPs in ethene activation using platinum systems.
Main Methods:
- Solution-state NMR spectroscopy for adduct identification.
- Solid-state X-ray crystallography for product characterization.
- Density Functional Theory (DFT) calculations for mechanistic analysis.
Main Results:
- Identification of two Lewis adducts between fluoroboranes and platinum complexes.
- Characterization of secondary products formed from these adducts.
- Demonstration of ethene activation using a platinum-based FLP system.
- DFT calculations provided insights into platinum-boron interactions and reaction mechanisms.
Conclusions:
- The study elucidates the reactivity patterns of Lewis acidic fluoroboranes with platinum complexes.
- The findings contribute to the understanding of Lewis adduct formation and subsequent transformations.
- The application of FLP principles in this system highlights potential for catalytic applications in ethene activation.
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