High Purity Diphenylphosphine (CAS 829-85-6): A Versatile Intermediate for Catalysis and Organic Synthesis

Discover the foundational role of Diphenylphosphine (CAS 829-85-6) in advancing catalysis and organic synthesis. As a leading manufacturer and supplier from China, we provide high-quality Diphenylphosphine to empower your research and industrial applications.

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Key Advantages of Partnering with Us for Diphenylphosphine

Superior Purity and Quality

Our Diphenylphosphine (CAS 829-85-6) is characterized by high purity (≥98.0% NMR), ensuring optimal performance in sensitive catalytic and synthetic applications. We guarantee quality from our manufacturing facilities in China.

Expertise in Handling Air-Sensitive Reagents

We understand the pyrophoric nature of Diphenylphosphine and provide robust packaging and storage guidance. Trust our expertise as a leading supplier to ensure safe and effective handling of this critical organophosphorus compound.

Competitive Pricing and Bulk Availability

Secure your supply of Diphenylphosphine at attractive prices. We cater to both research and industrial-scale purchase orders, offering competitive quotes for manufacturers and procurement managers.

Diverse Applications of Diphenylphosphine

Catalysis Development

Diphenylphosphine is vital for synthesizing diverse phosphine ligands, essential for homogeneous catalysis in pharmaceutical and fine chemical industries. Explore how to buy this key intermediate for your catalysis needs.

Organic Synthesis

As a versatile organophosphorus compound, it serves as a fundamental building block for Wittig-Horner reagents, phosphonium salts, and complex molecule construction. Find a reliable supplier for your organic synthesis projects.

Ligand Precursor

Its ability to form various phosphine ligands, such as those used in asymmetric hydrogenation and cross-coupling reactions, makes it invaluable for cutting-edge research and development.

Materials Science Research

Used in the development of advanced materials, including flame retardants and potentially in semiconductor applications, showcasing its broad utility beyond traditional chemical synthesis.