Phenyl Chlorothionocarbonate: A Versatile Intermediate for Advanced Synthesis

Discover the high-purity Phenyl Chlorothionocarbonate (CAS: 1005-56-7), an essential chemical building block for specialized organic synthesis and nucleoside chemistry. As a leading manufacturer and supplier, we provide reliable access to this critical reagent.

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Advantages of Sourcing Phenyl Chlorothionocarbonate

Exceptional Purity for Reliable Synthesis

Our Phenyl Chlorothionocarbonate boasts an assay of ≥98.0%, minimizing impurities and ensuring predictable outcomes in your sensitive chemical reactions. This high purity is crucial for demanding applications where product integrity is paramount.

Specialized Application in Nucleoside Chemistry

This compound is specifically utilized for applications like the decarboxylation of unprotected thymidine, making it an indispensable tool for researchers in medicinal chemistry and biotechnology. Explore how our product can advance your projects.

Secure Supply and Competitive Pricing

As a dedicated manufacturer and supplier, we guarantee a stable supply of Phenyl Chlorothionocarbonate. We offer competitive prices for bulk purchases, ensuring cost-effectiveness for your laboratory or production facility. Request a quote today!

Key Applications of Phenyl Chlorothionocarbonate

Decarboxylation Reactions

Phenyl Chlorothionocarbonate is a critical reagent for performing decarboxylation reactions, particularly in complex organic synthesis pathways. Its specific reactivity makes it valuable for targeted molecular transformations.

Organic Synthesis

Beyond specific decarboxylations, this compound serves as a versatile building block in broader organic synthesis. Researchers can buy Phenyl Chlorothionocarbonate to construct various complex organic molecules.

Pharmaceutical Intermediates

Its unique chemical properties make it a sought-after intermediate in the pharmaceutical industry for the synthesis of active pharmaceutical ingredients (APIs) or specialized drug precursors.

Nucleoside Chemistry

The compound's utility extends to nucleoside chemistry, where it plays a role in modifying or synthesizing modified nucleosides for research in virology and molecular biology.