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Specifications
| Appearance | Off white to cream colour powder |
| Purity (HPLC) | 99.0% min |
| Assay by Potentiometry | 99.0% min |
| Identification (IR) | Concordant with that of standard |
| Chloride by Potentiometry | 0.5% max |
| Water content by KF | 0.3% max |
Applications
Ethyl cyanoglyoxylate-2-oxime (CAS 3849-21-6) is a specialized organic intermediate widely used in pharmaceutical, agrochemical, and fine chemical synthesis. Its primary application is as a building block for the preparation of heterocyclic compounds, active pharmaceutical ingredients (APIs), and agrochemical derivatives. The compound contains both an oxime and a cyanoester functionality, which provides multiple reactive sites for nucleophilic addition, condensation, and cyclization reactions. This structural versatility allows chemists to construct nitrogen-containing heterocycles, which are important scaffolds in drug discovery, as well as intermediates for herbicides, pesticides, and specialty chemicals.
Benefits
The benefits of Ethyl cyanoglyoxylate-2-oxime lie in its high reactivity and multifunctional structure. Its oxime and cyanoester groups enable selective chemical transformations, facilitating the efficient synthesis of complex molecules with minimal side reactions. In pharmaceutical synthesis, it supports the creation of heterocyclic compounds with potential therapeutic activity, improving yield and process efficiency. Its versatility also allows incorporation into agrochemical intermediates and fine chemicals, supporting the development of products with targeted biological or functional properties. Additionally, its stability under standard storage conditions ensures safe handling and reliable use in both laboratory-scale and industrial-scale synthesis.
Conclusion
In conclusion, Ethyl cyanoglyoxylate-2-oxime is a valuable intermediate for pharmaceutical, agrochemical, and fine chemical applications. Its multifunctional structure and reactivity make it indispensable for constructing heterocyclic compounds and other complex molecules. By enabling efficient, selective, and high-yield chemical transformations, it plays a critical role in modern synthetic chemistry and the development of high-value bioactive and functional compounds.

