Product Description
Cigna Qingdao is mainly engaged in the intermediates of febuxostatin, ceflothrin, eprazole, flubiprofen, phenalidone, tovaptan, rivaroxaban and Avanafil, terbinafine intermediates, thioacetamide and thiophene and their derivatives.
AI Product Description
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2-Cyanoethyl 3-oxobutanoate, also known as ethyl acetoacetate cyanide or cyanoacetic acid ethyl ester derivative in specific contexts, is a versatile organic intermediate widely utilized in the synthesis of complex heterocyclic compounds and pharmaceutical agents. Its molecular formula is C7H9NO3, reflecting a structure that combines a reactive beta-keto ester moiety with a cyanoethyl group attached to the carbonyl carbon. The Compound carries the CAS Registry Number 10586-45-5. This chemical serves as a crucial building block in medicinal chemistry due to its ability to undergo diverse cyclization reactions.
The primary application of 2-cyanoethyl 3-oxobutanoate lies in the production of pyrazole, pyridine, and pyrimidine derivatives, which are fundamental scaffolds found in numerous bioactive molecules including antifungal, antiviral, and anticancer drugs. The presence of both the ketone and nitrile functional groups allows for nucleophilic attacks and condensation reactions under various catalytic conditions. For instance, it reacts readily with hydrazines to form substituted pyrazoles, a common motif in agrochemicals such as herbicides and fungicides. Furthermore, this reagent is employed in the synthesis of chelating agents and ligands used in coordination chemistry.
In industrial settings, it is valued for its role in producing high-performance polymers and specialty materials where thermal stability and specific electronic properties are required. The compound acts as an efficient precursor for synthesizing vitamin B1 analogs and other biologically active esters. Safety protocols must be strictly observed during handling, as with many organic nitriles, potential toxicity and skin irritation risks exist. Proper storage in cool, dry environments away from strong oxidizers is recommended to maintain stability. Overall, 2-cyanoethyl 3-oxobutanoate remains an indispensable tool for researchers and manufacturers aiming to develop novel therapeutic agents and advanced functional materials through precise organic synthesis pathways.