Di-tert-butyl Chloromethyl Phosphate: Your Reliable Supplier for Advanced Organic Synthesis

Explore the critical role of Di-tert-butyl Chloromethyl Phosphate (CAS: 229625-50-7) as a powerful phosphorylating and alkylating agent. Discover its applications in pharmaceutical intermediates, prodrug development, and complex organic synthesis. We are a trusted manufacturer and supplier, ensuring high purity and consistent quality for your research and production needs.

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Key Advantages of Our Di-tert-butyl Chloromethyl Phosphate

Exceptional Purity and Stability

Our Di-tert-butyl Chloromethyl Phosphate boasts a minimum purity of 97%, ensuring optimal reactivity and performance in your chemical syntheses. Properly stored under inert atmosphere at 2-8°C, it maintains its integrity, crucial for reliable results.

Versatile Synthetic Applications

This compound is an indispensable tool for O- and N-alkylation of alcohols and heterocycles, widely used in medicinal chemistry and the synthesis of complex organic molecules. It's a key intermediate for developing phosphon-oxymethyl prodrugs.

Reliable Supply Chain

As a dedicated manufacturer and supplier, we offer a stable and consistent supply of Di-tert-butyl Chloromethyl Phosphate. We cater to various scales, from laboratory research to industrial production, ensuring you can buy with confidence.

Diverse Applications in Chemical Synthesis

Pharmaceutical Intermediates

Utilize Di-tert-butyl Chloromethyl Phosphate as a key building block for synthesizing advanced pharmaceutical intermediates, vital for drug discovery and development.

Prodrug Development

It is essential for creating phosphon-oxymethyl prodrugs, a critical area in improving drug delivery and efficacy. Explore purchasing options for this vital reagent.

Medicinal Chemistry Research

Advance your medicinal chemistry projects with this versatile reagent, enabling modifications to enhance aqueous solubility and bioactivity.

Complex Organic Synthesis

Integrate Di-tert-butyl Chloromethyl Phosphate into your complex organic synthesis pathways, leveraging its reactivity for novel molecule construction.