High-Purity 2-ethylbutyl ((S)-(perfluorophenoxy)(phenoxy)phosphoryl)-L-alaninate Manufacturer & Supplier - Pharmaceutical Intermediate

Discover the critical pharmaceutical intermediate, 2-ethylbutyl ((S)-(perfluorophenoxy)(phenoxy)phosphoryl)-L-alaninate, essential for advanced drug synthesis. We are a trusted manufacturer and supplier in China, offering competitive pricing and guaranteed quality for your critical R&D and production needs.

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Advantages of Partnering with Us

Consistent Quality & Purity

Our rigorous quality control ensures that every batch of 2-ethylbutyl ((S)-(perfluorophenoxy)(phenoxy)phosphoryl)-L-alaninate meets stringent purity standards, crucial for pharmaceutical applications. As a dedicated supplier, we focus on delivering excellence.

Reliable Supply Chain & Competitive Pricing

Leveraging our manufacturing capabilities in China, we offer a stable supply of this pharmaceutical intermediate. We understand the importance of cost-effectiveness and provide competitive pricing for bulk orders, making it easier for you to buy.

Expert Technical Support

Benefit from our expertise in chemical synthesis and pharmaceutical intermediates. Our team is ready to provide technical information and support to facilitate your research and development projects. Contact us for a quote.

Key Applications

Pharmaceutical Intermediates

A critical component in the synthesis of various active pharmaceutical ingredients (APIs), especially in complex antiviral drug development. This compound is essential for ensuring the efficacy and safety of final drug products.

Remdesivir Synthesis

Serves as a vital intermediate in the multi-step synthesis of Remdesivir, an important antiviral medication. Our reliable supply ensures continuity for manufacturers involved in this critical production.

Chiral Compound Synthesis

Its defined stereochemistry makes it valuable for stereoselective synthesis, allowing for the precise creation of enantiomerically pure drug candidates and intermediates.

Specialty Organic Synthesis

Beyond specific drug synthesis, its unique fluorinated and phosphorylated structure makes it a valuable building block in advanced organic chemistry research and the development of novel chemical entities.