(S)-4-Isobutyloxazolidine-2,5-dione (CAS 3190-70-3): A Key Chiral Intermediate for Advanced Synthesis

Discover the critical role of (S)-4-Isobutyloxazolidine-2,5-dione in modern chemical synthesis. As a leading manufacturer and supplier, we provide this high-purity chiral intermediate essential for sophisticated peptide and polymer applications. Trust us for reliable sourcing and competitive pricing.

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Why Choose Our (S)-4-Isobutyloxazolidine-2,5-dione

Uncompromising Quality & Purity

Our (S)-4-Isobutyloxazolidine-2,5-dione (CAS 3190-70-3) undergoes rigorous quality control, ensuring it meets stringent industry standards for purity and stereochemical integrity. This makes it a dependable choice for sensitive applications, allowing you to confidently buy for your research and production needs.

Expert Manufacturing & Supply Chain

Leveraging advanced synthesis techniques, we are a leading manufacturer and supplier of this critical pharmaceutical intermediate. Our efficient supply chain management guarantees timely delivery and competitive price points for those looking to purchase this essential chiral building block.

Supporting Your Research & Development

We understand the importance of reliable reagents for innovation. By choosing us as your supplier, you gain access to comprehensive technical data and dedicated support, ensuring your peptide synthesis and polymer development projects achieve their desired outcomes. Contact us to inquire about pricing and availability.

Diverse Applications of a Key Chiral Intermediate

Peptide Synthesis

As a versatile N-carboxyanhydride (NCA), (S)-4-Isobutyloxazolidine-2,5-dione is indispensable for efficient peptide chain elongation, enabling the synthesis of complex polypeptides for pharmaceutical research.

Polymer Chemistry

This compound serves as a key monomer for ring-opening polymerization, facilitating the creation of advanced, stereoregular polypeptides and biomaterials crucial for drug delivery systems and tissue engineering.

Pharmaceutical Intermediates

Its specific chiral structure makes it a valuable intermediate in the synthesis of active pharmaceutical ingredients (APIs), particularly where stereoselectivity is paramount for biological activity.

Biomaterials Development

Researchers utilize this compound to develop novel biomaterials with tailored properties, leveraging its biocompatibility and biodegradability for advanced medical applications.