CAS · 26227-54-3
Product Overview
Cyclohexylamine hydrobromide is a high-purity battery-materials supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance: | White crystalline |
|---|---|
| Assay: | 99% min |
| Ignition residue: | 0.1% max |
| Melting Point (Mp): | 196-199℃ |
| Water: | 0.5% max |
Applications
Cyclohexylamine hydrobromide is an important organic amine salt used extensively in pharmaceutical synthesis, agrochemical production, and chemical research. It serves as a key intermediate for the preparation of cyclohexylamine derivatives, which are utilized in the development of drugs, herbicides, insecticides, and fungicides. The compound is also applied in the synthesis of specialty chemicals, including corrosion inhibitors, rubber accelerators, and surfactants. In research and industrial processes, it is used as a building block for amide, urea, and carbamate compounds, enabling the design of bioactive molecules and functionalized intermediates with improved chemical properties.
Benefits
Cyclohexylamine hydrobromide offers several advantages due to its high purity, stability, and solubility in water and organic solvents. As a hydrobromide salt, it is easier to handle, store, and weigh compared to the free amine, reducing the risk of volatility and oxidation. Its chemical reactivity allows efficient incorporation into various organic transformations, including alkylation, acylation, and condensation reactions. The compound provides reproducible results in multi-step synthesis, supporting high-yield production of pharmaceuticals, agrochemicals, and specialty chemicals. Additionally, it is compatible with a wide range of reaction conditions, making it a versatile reagent for both laboratory and industrial applications.
Conclusion
Cyclohexylamine hydrobromide is a valuable amine salt used as a building block and intermediate in pharmaceutical, agrochemical, and specialty chemical synthesis. Its stability, solubility, and high reactivity make it ideal for multi-step chemical transformations, enabling the efficient production of bioactive compounds and functional materials. The compound remains a key reagent for research and industrial applications where controlled and reliable chemical reactivity is required.
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