CAS · 109-84-2
Product Overview
2-hydrazinoethanol 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 (40°C) | Colorless or light yellow viscous liquid |
|---|---|
| Purity | 90.0% min |
| pH value (1% solution) | 9.0 to 11.0 |
| Density | 1 g/cm³ to 1.15 g/cm³ |
Applications
2-Hydrazinoethanol is widely used as a chemical intermediate and reagent in organic synthesis and pharmaceutical research. It serves as a building block for the preparation of heterocyclic compounds, hydrazones, and azoles, which are commonly found in bioactive molecules, agrochemicals, and pharmaceutical candidates. The compound is also used in the synthesis of chelating agents, polymer modifiers, and specialty intermediates that require a hydrazine functional group combined with an alcohol moiety. Additionally, 2-hydrazinoethanol finds applications in chemical biology and medicinal chemistry for designing enzyme inhibitors, receptor ligands, and targeted prodrugs.
Benefits
The compound offers several advantages due to its bifunctional nature, combining a reactive hydrazine group with a hydroxyl group. This dual functionality allows selective reactions at either site, enabling versatile derivatization and incorporation into complex molecules. It is soluble in common organic solvents, facilitating smooth reactions under standard laboratory conditions. Its reactivity enables high-yield synthesis of hydrazones, heterocycles, and other derivatives with minimal side reactions. The presence of both nucleophilic and hydroxyl sites also allows fine-tuning of molecular properties in pharmaceuticals and advanced intermediates, supporting efficient chemical design and synthesis.
Conclusion
2-Hydrazinoethanol (CAS 109-84-2) is a versatile and valuable intermediate for organic, pharmaceutical, and agrochemical synthesis. Its bifunctional structure provides high reactivity and synthetic flexibility, enabling the construction of heterocycles, hydrazones, and bioactive derivatives. By combining chemical versatility with reliability in reactions, it serves as an essential building block in modern medicinal and chemical research.
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