High Purity 2,6-Bis((R)-4-isopropyl-4,5-dihydrooxazol-2-yl)pyridine CAS 131864-67-0 for Enantioselective Catalysis | Supplier

Discover the critical role of 2,6-Bis((R)-4-isopropyl-4,5-dihydrooxazol-2-yl)pyridine, a premier C2 symmetric ligand essential for advanced enantioselective catalysis. This high-purity compound (CAS 131864-67-0) is a key pharmaceutical intermediate, offered by leading manufacturers in China for your critical synthesis needs.

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Advantages of Partnering with Our Expert Chemical Supplier

Exceptional Enantioselectivity

Our 2,6-Bis((R)-4-isopropyl-4,5-dihydrooxazol-2-yl)pyridine is engineered to deliver superior enantioselectivity in catalyzed reactions, a critical factor for producing chiral compounds and ensuring the efficacy of pharmaceutical intermediates.

Versatile Coordination Chemistry

This C2 symmetric ligand readily forms stable bidentate coordination complexes with various metals. This versatility makes it an ideal choice for a broad spectrum of enantioselective catalysis applications in organic synthesis.

Guaranteed Product Quality & Stability

With a melting point of 154-156°C and storage at room temperature under an inert atmosphere, our product offers excellent stability. As a leading supplier in China, we guarantee consistent quality and reliable performance for your chemical needs.

Key Applications in Advanced Chemical Synthesis

Enantioselective Catalysis

Utilize this powerful C2 symmetric ligand to drive asymmetric transformations with high efficiency and selectivity, a cornerstone for modern synthetic chemistry and pharmaceutical development.

Pharmaceutical Intermediate Synthesis

Source this crucial building block to facilitate complex drug molecule synthesis. Its specific chiral properties are essential for creating active pharmaceutical ingredients (APIs) with desired biological activity.

Chiral Ligand Development

As a highly regarded chiral reagent, it serves as an excellent starting point or benchmark for researchers developing new catalytic systems and improving existing methodologies in asymmetric synthesis.

Organic Chemistry Research

Explore novel reaction pathways and optimize synthetic routes with this high-quality organometallic precursor, readily available for purchase from our extensive catalog.