High Purity (3R)-(+)-3-Aminopyrrolidine CAS 116183-82-5: A Key Chiral Building Block for Pharmaceutical Synthesis

Discover the critical role of (3R)-(+)-3-Aminopyrrolidine, a vital chiral intermediate for advanced pharmaceutical synthesis. Sourced from leading manufacturers in China, this compound offers exceptional purity and reliable performance for your complex chemical needs. Inquire for pricing and samples.

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Advantages of Sourcing (3R)-(+)-3-Aminopyrrolidine

Consistent Quality from Leading Manufacturers

Partner with us to secure a stable supply of (3R)-(+)-3-Aminopyrrolidine, manufactured under stringent quality controls. Our status as a premier supplier in China guarantees lot-to-lot consistency, vital for reproducible R&D and production.

Competitive Pricing and Bulk Availability

We offer competitive pricing for (3R)-(+)-3-Aminopyrrolidine, catering to both research quantities and large-scale industrial procurement. Request a quote today to discuss your specific bulk purchase requirements.

Expert Technical Support and Sourcing

Leverage our expertise as a chemical sourcing specialist. Our team can provide detailed technical data, safety information, and assist with your procurement of this essential pharmaceutical intermediate.

Key Applications of (3R)-(+)-3-Aminopyrrolidine

Pharmaceutical Synthesis

This chiral amine is a cornerstone in the synthesis of various Active Pharmaceutical Ingredients (APIs), contributing to the development of new therapeutics. Its specific stereochemistry is crucial for efficacy.

Chiral Building Block

As a versatile chiral building block, it enables chemists to construct complex molecular architectures with precise stereochemical control, essential for drug design and development.

Fine Chemical Intermediates

Utilized in the creation of other advanced fine chemicals, its unique structure makes it valuable for diverse synthetic pathways in the chemical industry.

Research and Development

Scientists in R&D laboratories rely on high-quality (3R)-(+)-3-Aminopyrrolidine for exploring novel reaction methodologies and developing new chemical entities.