Di(1-adamantyl)-n-butylphosphine Hydroiodide (CAS 714951-87-8): High-Purity Ligand Precursor for Catalysis | Supplier China

Discover the critical role of Di(1-adamantyl)-n-butylphosphine hydroiodide (CAS 714951-87-8) in modern organic synthesis. As a leading manufacturer and supplier in China, we provide high-quality, high-purity white crystalline powder to empower your catalytic processes.

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Advantages of Sourcing Our Di(1-adamantyl)-n-butylphosphine Hydroiodide

Unmatched Catalytic Performance

Leverage our Di(1-adamantyl)-n-butylphosphine hydroiodide as a premium ligand precursor to achieve enhanced efficiency and selectivity in Suzuki coupling and amination reactions. Partner with our reliable supplier in China for consistent quality.

Cost-Effective Procurement

As a direct manufacturer, we offer competitive pricing on Di(1-adamantyl)-n-butylphosphine hydroiodide, allowing you to optimize your R&D and production budgets. Buy this crucial intermediate from a trusted Chinese supplier.

Guaranteed Supply Stability

Rely on our robust manufacturing capabilities and streamlined supply chain to ensure a stable and continuous supply of Di(1-adamantyl)-n-butylphosphine hydroiodide, crucial for uninterrupted research and production.

Key Applications in Chemical Synthesis

Palladium-Catalyzed Amination

Utilize Di(1-adamantyl)-n-butylphosphine hydroiodide as an effective ligand precursor to drive efficient palladium-catalyzed amination reactions, vital for synthesizing pharmaceutical intermediates and fine chemicals.

Suzuki Coupling Reactions

Enhance your Suzuki-Miyaura coupling yields and scope with this high-performance phosphine ligand. Our product is a preferred choice for researchers and formulators seeking reliable catalysts.

Pharmaceutical Intermediates

This compound serves as a critical building block in the synthesis of complex pharmaceutical intermediates, contributing to the development of novel therapeutics. Inquire about our supplier services for purchase.

Advanced Organic Synthesis

Explore the potential of Di(1-adamantyl)-n-butylphosphine hydroiodide in various advanced organic synthesis pathways, enabling the creation of intricate molecular structures with high precision.