High-Purity Palladium Catalyst for Efficient C-C Coupling Reactions
Explore the advantages of Dichlorobis(tri-o-tolylphosphine)palladium(II), a premium palladium catalyst vital for advancing organic synthesis and pharmaceutical development. We are a leading manufacturer and supplier in China.
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Dichlorobis(tri-o-tolylphosphine)palladium(II)
As a trusted manufacturer and supplier in China, we offer high-purity Dichlorobis(tri-o-tolylphosphine)palladium(II) (CAS: 40691-33-6). This palladium complex is instrumental in facilitating complex organic transformations, including critical C-C and C-N coupling reactions essential for pharmaceutical intermediates and advanced materials. Its superior quality ensures reliable performance for your chemical manufacturing needs.
- Expertly manufactured in China: Secure a stable supply of a high-purity palladium catalyst.
- Ideal for C-C and C-N coupling reactions: Enhance your Suzuki, Heck, and other cross-coupling processes.
- High Palladium (Pd) content: Ensure catalytic efficiency with ≥13.5% Pd concentration.
- Soluble in ethanol, benzene, and ethereal solvents: Facilitate seamless integration into your existing reaction systems.
Key Advantages of Our Palladium Catalyst
Superior Catalytic Activity
Leverage the exceptional performance of our Dichlorobis(tri-o-tolylphosphine)palladium(II) for efficient C-C bond formation in complex synthesis, offering a distinct advantage for purchasing managers seeking cost-effective solutions.
Consistent Product Purity
Our commitment to quality ensures a minimum purity of 97%, providing researchers and formulators with reliable and reproducible results for demanding applications, making it easier to buy with confidence.
Reliable Supply Chain
As a reputable supplier in China, we guarantee a consistent and dependable supply of this critical palladium catalyst, ensuring your production schedules are met without disruption.
Versatile Applications in Modern Chemistry
Pharmaceutical Synthesis
Crucial for developing new drug molecules by enabling precise C-C bond formation in medicinal chemistry research, directly impacting pharmaceutical development.
Material Science Innovation
Used in the creation of advanced polymers and nanomaterials, offering chemists and material scientists a powerful tool for innovation.
Fine Chemical Manufacturing
An essential catalyst for the production of specialty chemicals and intermediates, supporting manufacturers seeking to optimize their processes.
Academic Research & Development
Valuable for researchers exploring new synthetic methodologies and catalytic processes, providing a high-quality reagent for scientific discovery.