CAS · 333-93-7
Product Overview
1,4-Diaminobutane dihydrochloride is a high-purity biochemical-reagents supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance | White crystalline powder |
|---|---|
| Assay (Titration) | 98% min |
| Clarity and Color of Solution | Clarity and colorless |
| Loss on Drying | 0.50% max |
| Chloride | 42.3 – 45.8% |
| Melting Point (MP) | 275℃ min |
| Residue on Ignition | 0.20% max |
| Sulfate (SO₄) | 0.02% max |
| Iron (Fe) | 0.002% max |
| Heavy Metals (Pb) | 0.002% max |
Applications
1,4-Diaminobutane dihydrochloride, also known as putrescine dihydrochloride, is widely used in biochemical, pharmaceutical, and industrial fields. In biochemical research, it is an important polyamine derivative involved in cell growth, differentiation, and metabolic processes, making it useful in molecular biology and microbiology studies. In pharmaceuticals, it serves as a raw material or intermediate for synthesizing drugs, enzyme inhibitors, and polyamine analogs. Industrially, it is applied in the preparation of specialty polymers, resins, and agrochemicals, as well as in the stabilization of DNA and RNA structures in research.
Benefits
This compound provides multiple advantages due to its versatility and reactivity. It acts as a stabilizer for nucleic acids and proteins in laboratory settings, supports cell proliferation studies, and aids in understanding polyamine metabolism. Its high purity and solubility in water make it suitable for biochemical assays and pharmaceutical synthesis. In materials science, it contributes to enhanced polymer properties by introducing amine functionality, which improves adhesion, flexibility, and durability in coatings and resins.
Conclusion
1,4-Diaminobutane dihydrochloride is an important multifunctional compound with roles in life science research, drug development, and advanced materials production. Its biological relevance as a polyamine derivative and chemical utility as a reactive intermediate ensure its continued demand in scientific and industrial applications.
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