High Purity (R)-(+)-Diphenyl-2-pyrrolidinemethanol: Your Premier Pharmaceutical Intermediate Supplier in China

Discover the exceptional quality and reliability of (R)-(+)-Diphenyl-2-pyrrolidinemethanol (CAS 22348-32-9), a vital pharmaceutical intermediate. We, as a leading manufacturer and supplier in China, offer high purity (≥99%) material essential for advanced organic synthesis and chiral catalyst preparation. Partner with us for competitive pricing and dedicated support.

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Why Choose Us as Your (R)-(+)-Diphenyl-2-pyrrolidinemethanol Supplier

Uncompromising Purity and Consistency

We ensure every batch of (R)-(+)-Diphenyl-2-pyrrolidinemethanol achieves a purity of ≥99%, critical for sensitive pharmaceutical synthesis and chiral catalysis. As a dedicated manufacturer, we maintain strict quality control to meet your exact specifications. Find a trusted supplier for your research.

Expertise in Pharmaceutical Intermediates

Leveraging years of experience, we specialize in producing high-quality pharmaceutical intermediates like (R)-(+)-Diphenyl-2-pyrrolidinemethanol. Our technical team offers robust support, making us an ideal partner for your chemical sourcing. Contact us to buy.

Reliable Supply Chain and Global Reach

As a leading supplier in China, we offer a stable and efficient supply chain for (R)-(+)-Diphenyl-2-pyrrolidinemethanol, ensuring timely delivery worldwide. Benefit from our professional logistic support and competitive pricing for your purchase orders.

Key Applications of (R)-(+)-Diphenyl-2-pyrrolidinemethanol

Chiral Catalyst Preparation

Used to prepare chiral oxazaborolidines, essential for asymmetric reduction reactions. This application highlights its value for R&D chemists seeking precise stereochemical outcomes.

Pharmaceutical Synthesis

Serves as a vital intermediate in the synthesis of various active pharmaceutical ingredients (APIs), contributing to the development of new therapeutic agents. Inquiry about bulk purchase.

Asymmetric Reduction Reactions

Facilitates stereoselective reduction of ketones, a cornerstone technique in modern organic synthesis for producing enantiomerically pure compounds. Partner with a top chemical supplier.

Specialty Chemical Research

Valuable in academic and industrial research for exploring new synthetic methodologies and developing novel chemical entities. Contact us for a quote on this essential research chemical.