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Specifications
| Appearance | Orange powder |
| Purity (HPLC) | 98.0% min |
| H-NMR | Conform |
| P-NMR | Conform |
| Melting Point | 138 °C |
| Residual solvent | 0.50% max |
Applications
1,1-Bis(dicyclohexylphosphino)ferrocene (CAS 146960-90-9) is a specialized organophosphorus compound widely used as a ligand in homogeneous catalysis and organometallic chemistry. Its primary application is as a bidentate phosphine ligand in transition-metal-catalyzed reactions, such as cross-coupling, hydrogenation, and hydroformylation. The bulky dicyclohexylphosphino groups and the ferrocene backbone provide excellent steric and electronic properties, which enhance catalyst stability, selectivity, and activity. This compound is commonly employed in the synthesis of fine chemicals, pharmaceuticals, and specialty materials, where precise control over stereochemistry and reaction efficiency is required.
Benefits
The benefits of 1,1-Bis(dicyclohexylphosphino)ferrocene stem from its unique combination of steric bulk, electronic properties, and robust ferrocene backbone. These features allow it to stabilize transition-metal complexes, improving catalyst lifetime and reducing side reactions. Its strong electron-donating phosphine groups enhance the reactivity of metal centers, enabling efficient and selective transformations under milder conditions. Additionally, it facilitates high stereoselectivity in asymmetric reactions, making it valuable for the production of chiral molecules in pharmaceutical and fine chemical synthesis. Its versatility and effectiveness in various catalytic systems make it a preferred choice in both academic research and industrial applications.
Conclusion
In conclusion, 1,1-Bis(dicyclohexylphosphino)ferrocene is a highly effective ligand for transition-metal catalysis. Its steric and electronic properties, combined with the stable ferrocene backbone, enable enhanced reaction efficiency, selectivity, and stereocontrol. By supporting the development of high-value fine chemicals, pharmaceuticals, and specialty materials, it plays a critical role in modern organometallic and catalytic chemistry.

