(3S)-4-Chloro-3-[(trimethylsilyl)oxy]butanenitrile: A Key Chiral Intermediate for Pharmaceutical Synthesis

Discover the crucial role of (3S)-4-Chloro-3-[(trimethylsilyl)oxy]butanenitrile (CAS 727382-14-1) as a high-value chiral building block. We offer this advanced pharmaceutical intermediate, essential for asymmetric synthesis and the production of critical drugs like statins. Explore its properties and applications from a leading supplier in China.

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Advantages of Sourcing Our Chiral Intermediate

Exceptional Purity & Chirality

Our (3S)-4-Chloro-3-[(trimethylsilyl)oxy]butanenitrile boasts high purity, often exceeding 98% (GC), with excellent enantiomeric excess (ee), ensuring reliable outcomes in your asymmetric synthesis and pharmaceutical intermediate production.

Strategic Pharmaceutical Intermediate

Leverage this compound's unique structure for the efficient synthesis of statins, a critical class of drugs for managing cholesterol. It serves as a vital building block in your pharmaceutical development pipeline.

Reliable Manufacturing & Supply Chain

Partner with a reputable manufacturer and supplier. We offer consistent quality, competitive price, and stable supply, guaranteeing that you can purchase this essential chemical whenever you need it.

Key Applications and Uses

Pharmaceutical Synthesis

Crucial intermediate for creating statins and other HMG-CoA reductase inhibitors, vital for cardiovascular health drug development. Explore how to buy this compound for your API synthesis.

Asymmetric Synthesis

A valuable chiral synthon enabling the precise construction of stereochemically defined molecules, essential in modern organic chemistry and drug discovery.

Fine Chemical Production

Used in the broader fine chemical industry where specific chiral structures are required for advanced material development and specialized applications.

R&D and Custom Synthesis

An excellent compound for research laboratories and custom synthesis projects requiring specialized building blocks. Request a sample to evaluate its potential in your research.