High-Purity (S)-4-Chloro-3-hydroxybutyronitrile: A Key Chiral Intermediate for Pharmaceutical Synthesis
Unlock advanced pharmaceutical synthesis with our critical chiral building block.
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(S)-4-Chloro-3-hydroxybutyronitrile
This compound is a vital chiral intermediate, extensively utilized in the synthesis of complex organic molecules, particularly within the pharmaceutical industry. Its unique stereochemistry makes it indispensable for producing enantiomerically pure drugs.
- Leverage our high-purity (S)-4-Chloro-3-hydroxybutyronitrile for advanced pharmaceutical synthesis, ensuring the quality of your final drug product.
- It serves as a critical building block in the synthesis of atorvastatin precursors, contributing to the development of cholesterol-lowering medications.
- Utilize this compound as a precursor for hydroxypyrrolidinones, essential in the creation of carbapenem antibiotics.
- The compound's stability and reactivity make it an ideal choice for various organic synthesis pathways, facilitating efficient chemical transformations.
Key Advantages
Exceptional Chirality Purity
Benefit from a high-purity chiral intermediate that minimizes racemization risk, crucial for the synthesis of enantiomerically pure pharmaceuticals.
Versatile Synthetic Applications
This compound is a key component in numerous organic synthesis pathways, including the preparation of pharmaceutical intermediates and specialty chemicals.
Reliable Pharmaceutical Intermediate
Trust in a stable and reactive compound ideal for demanding pharmaceutical manufacturing processes, ensuring consistent results.
Key Applications
Pharmaceutical Development
This compound is essential for the pharmaceutical synthesis of active pharmaceutical ingredients (APIs), especially in drugs targeting neurological disorders.
Organic Synthesis
It's a valuable chiral building block enabling the creation of complex molecules with specific functional groups, supporting diverse organic chemistry research.
Drug Precursor Manufacturing
Used in the preparation of critical precursors for widely used medications like atorvastatin, enhancing therapeutic outcomes.
Specialty Chemical Synthesis
Explore its use in synthesizing advanced materials and fine chemicals that require specific structural properties.