Description
Specifications Table
| Product Name | 10-Dichloro(1,1′-bis(di-4-Butylphosphino)Ferrocene)Palladium(II) extrapure, 98% |
|---|---|
| Pack Size | 250 Mg – 1 Gms – 5 Gms |
| Form | Solid |
| Grade | Extrapure (98%) |
| Application | Catalyst for C-C coupling, Suzuki-Miyaura, Heck reactions |
Product Description
This high-purity dichloropalladium catalyst, featuring a ferrocene-based ligand structure, is designed for demanding organic synthesis applications. With 98% purity, it ensures reliable performance in cross-coupling reactions like Suzuki-Miyaura and Heck couplings, making it a preferred choice for researchers and chemists.
The 1,1′-bis(di-tert-butylphosphino)ferrocene backbone provides exceptional stability and reactivity, reducing side reactions while maintaining catalytic efficiency. Whether you’re working in academic labs or industrial R&D, this palladium(II) complex delivers consistent results.
For bulk orders or custom packaging, eqipped offers flexible options to meet your research needs. Our streamlined supply chain ensures quick delivery across India, so you can focus on your experiments without delays.
Upgrade your catalysis workflow with this high-performance palladium catalyst. Order today and experience precision in every reaction.
FAQs
What is the typical loading for this dichloropalladium catalyst in Suzuki reactions?
Standard loadings range from 0.5–2 mol% depending on substrate reactivity. For challenging couplings, up to 5 mol% may be used.
Can this catalyst be used for Buchwald-Hartwig amination?
While optimized for C-C couplings, it can be adapted for amination with appropriate ligands. Test small-scale reactions first.
How does the ferrocene backbone improve catalyst performance?
The rigid ferrocene structure enhances ligand stability, reducing palladium leaching and improving turnover numbers compared to traditional phosphine ligands.
Is this catalyst compatible with microwave-assisted synthesis?
Yes, but ensure proper pressure-rated vessels and temperature control. Reduce loading by 30–50% for microwave conditions.
What solvents work best for this palladium catalyst?
Common choices include THF, toluene, and dioxane. Avoid chlorinated solvents unless specifically required for your protocol.