High-Purity Tri-tert-butylphosphine: Your Premier Supplier for Pharmaceutical Synthesis and Metal Catalysis

Discover the exceptional properties of Tri-tert-butylphosphine, an essential electron-rich ligand for advanced chemical synthesis. As a leading manufacturer and supplier, we provide high-quality P(t-Bu)3 for your critical applications in pharmaceuticals and metal catalysis. Obtain a quote and sample today.

Get a Quote & Sample

Key Advantages of Our Tri-tert-butylphosphine

Superior Catalytic Activity

Our Tri-tert-butylphosphine acts as a highly effective electron-rich ligand, significantly enhancing the activity and selectivity of palladium catalysts in various cross-coupling reactions. Explore how P(t-Bu)3 can improve your synthesis efficiency.

High Purity for Demanding Applications

Supplied as a colorless liquid with an assay of 98.3%, our product meets stringent industry standards, making it ideal for sensitive pharmaceutical intermediate synthesis. Purchase P(t-Bu)3 with confidence from our China facility.

Broad Application Spectrum

Tri-tert-butylphosphine is a versatile chemical, widely used in the synthesis of pharmaceutical intermediates and as a ligand in metal catalysis. Find out why leading R&D scientists choose our P(t-Bu)3 for their projects.

Versatile Applications

Pharmaceutical Synthesis

Utilize Tri-tert-butylphosphine as a key reagent for synthesizing complex pharmaceutical intermediates. Discover our competitive Tri-tert-butylphosphine price for bulk purchases.

Metal Catalyst Ligands

Employ P(t-Bu)3 as an electron-rich ligand to boost the performance of palladium and other metal catalysts in various organic transformations.

Cross-Coupling Reactions

Achieve superior results in Suzuki, Heck, and other cross-coupling reactions with our high-quality Tri-tert-butylphosphine. We are a leading supplier of P(t-Bu)3 in China.

Specialty Chemical Manufacturing

Incorporate Tri-tert-butylphosphine into your specialty chemical manufacturing processes for enhanced product development and synthesis efficiency.