(R)-(+)-1,1'-Bi-2-naphthol (BINOL): Your Premier Chiral Synthesis Partner

(R)-(+)-1,1'-Bi-2-naphthol (CAS: 18531-94-7), commonly known as (R)-BINOL, is a pivotal chiral molecule indispensable for modern asymmetric synthesis. As a leading supplier in China, we offer high-purity (R)-BINOL, crucial for pharmaceutical intermediates, advanced materials, and catalytic applications. Discover why sourcing from us ensures quality and reliability.

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Key Advantages of Sourcing (R)-BINOL

Exceptional Enantiomeric Purity

Our (R)-(+)-1,1'-Bi-2-naphthol consistently achieves enantiomeric excess (ee) exceeding 99%, making it ideal for applications demanding precise stereochemical outcomes. This purity is essential for developing effective chiral pharmaceuticals and catalysts, ensuring the quality of your end products.

Broad Application Spectrum

This chiral molecule serves as a fundamental building block in asymmetric synthesis, enabling the production of enantiomerically pure compounds. Its utility spans areas like asymmetric epoxidation, Diels-Alder reactions, and as a precursor for chiral phosphine ligands, making it a cornerstone for R&D and industrial production.

Competitive Global Supply

As a leading chemical supplier, we offer competitive pricing for (R)-BINOL, especially for bulk purchases. Leverage our strong manufacturing partnerships in China to secure a consistent and cost-effective supply chain for this critical intermediate. Contact us for a quote today.

Diverse Applications of (R)-(+)-1,1'-Bi-2-naphthol

Asymmetric Catalysis

The most significant application of (R)-BINOL is its role in creating chiral catalysts and ligands. These are fundamental for stereoselective synthesis in the pharmaceutical industry, enabling the efficient production of chiral drugs.

Organic Synthesis Building Block

As a chiral auxiliary and building block, (R)-BINOL facilitates complex organic syntheses. Its unique structure allows for the introduction of chirality into various molecular frameworks, crucial for creating novel compounds.

Chiral Stationary Phases

It is also used in the development of chiral stationary phases for High-Performance Liquid Chromatography (HPLC), aiding in the separation and analysis of enantiomers.

Material Science

(R)-BINOL derivatives find applications in advanced materials, including chiral liquid crystals and optoelectronic devices, showcasing its versatility beyond traditional chemical synthesis.