CAS · 29671-92-9
Product Overview
Chloroformamidine hydrochloride is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance | White crystalline powder |
|---|---|
| Assay (T) | 98% min |
| Melting point | 170 – 181 °C |
Applications
Chloroformamidine hydrochloride is an important reagent and intermediate in organic synthesis, particularly in heterocyclic and pharmaceutical chemistry. It serves as a versatile precursor for the preparation of amidines, guanidines, and nitrogen-containing heterocycles, which are key scaffolds in drug development. In medicinal chemistry, it is employed in the synthesis of bioactive molecules, enzyme inhibitors, and potential therapeutic agents. Its reactivity with nucleophiles makes it valuable for constructing functionalized compounds with applications in pharmaceuticals, agrochemicals, and fine chemicals. Additionally, it is used in academic and industrial research for method development and as a building block in synthetic pathways that require controlled incorporation of amidine functionality.
Benefits
The benefits of chloroformamidine hydrochloride lie in its high reactivity, structural versatility, and utility in synthetic chemistry. Its ability to introduce amidine groups enables access to a wide range of functional molecules that are otherwise challenging to synthesize. The compound is relatively easy to handle in its hydrochloride salt form, offering better stability and solubility compared to free base counterparts. This makes it convenient for laboratory and industrial use, improving workflow efficiency. Furthermore, its adaptability across different chemical sectors-pharmaceuticals, agrochemicals, and materials-enhances its value as a multipurpose intermediate.
Conclusion
Chloroformamidine hydrochloride (CAS 29671-92-9) is a valuable synthetic intermediate widely used in pharmaceutical and fine chemical research. Its strong reactivity, structural flexibility, and convenient salt form support efficient synthesis of amidine-containing molecules and heterocycles. With its broad applicability and practical benefits, it remains an important tool for advancing chemical innovation and development.
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