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【Chemical Name】 Ethyl (ethoxymethylene)cyanoacetate
【Synonym】 Acrylicacid,2-cyano-3-ethoxy-,ethylester;Ethyl(2E)-2-cyano-3-ethoxy-2-propenoate;Ethyl3-ethoxy-2-cyanoacrylate;Ethylalpha-(ethoxymethylene)-alpha-cyanoacetate;EtChemicalbookhylcyano(ethoxymethylene)acetate;2-cyano-3-ethoxy-2-propenoicaciethylester;2-Propenoicacid,2-cyano-3-ethoxy-,ethylester;2-CYANO-3-ETHOXY-2-PROPENOICACIDETHYLESTER
【CAS No】 94-05-3
【Molecular Formula】C8H11NO3
【Molecular Weight】 169.18
【Properties】Melting point 49-51 °C(lit.)Boiling point 190-191 °C30 mm Hg(lit.)Density 1.2435 (rough estimate)Refractive index1.5100 (estimate)
【Specification】≥99
【Packing】25kg/drum
【Usage】 Ethyl ethoxymethylenecyanoacetate can be used as an intermediate in organic synthesis and pharmaceuticals.
【Introduction】
Ethyl ethoxymethylenecyanoacetate is indeed a valuable compound in the field of organic synthesis and pharmaceuticals due to its versatility and reliability. Its unique chemical structure makes it an excellent intermediate for various synthetic pathways, facilitating the development of complex molecules. The high purity and quality of this compound ensure that it performs consistently, which is crucial for both research and industrial applications.
In pharmaceuticals, Ethyl ethoxymethylenecyanoacetate can be used to synthesize a wide range of active pharmaceutical ingredients (APIs), contributing to the development of new drugs and therapies. Its role as an intermediate means it can help streamline the synthesis process, potentially reducing costs and increasing efficiency.
For researchers involved in advanced organic synthesis, this compound offers the precision and dependability needed to achieve reproducible results. Its ability to participate in various chemical reactions makes it a valuable tool in the synthesis of complex organic molecules.
Overall, Ethyl ethoxymethylenecyanoacetate is a trusted choice for those seeking a high-performance compound for their synthetic and pharmaceutical endeavors. Whether in the lab or in production, it supports innovation and excellence in chemical synthesis.
【Chemical Name】 Ethyl (ethoxymethylene)cyanoacetate
【Synonym】 Acrylicacid,2-cyano-3-ethoxy-,ethylester;Ethyl(2E)-2-cyano-3-ethoxy-2-propenoate;Ethyl3-ethoxy-2-cyanoacrylate;Ethylalpha-(ethoxymethylene)-alpha-cyanoacetate;EtChemicalbookhylcyano(ethoxymethylene)acetate;2-cyano-3-ethoxy-2-propenoicaciethylester;2-Propenoicacid,2-cyano-3-ethoxy-,ethylester;2-CYANO-3-ETHOXY-2-PROPENOICACIDETHYLESTER
【CAS No】 94-05-3
【Molecular Formula】C8H11NO3
【Molecular Weight】 169.18
【Properties】Melting point 49-51 °C(lit.)Boiling point 190-191 °C30 mm Hg(lit.)Density 1.2435 (rough estimate)Refractive index1.5100 (estimate)
【Specification】≥99
【Packing】25kg/drum
【Usage】 Ethyl ethoxymethylenecyanoacetate can be used as an intermediate in organic synthesis and pharmaceuticals.
【Introduction】
Ethyl ethoxymethylenecyanoacetate is indeed a valuable compound in the field of organic synthesis and pharmaceuticals due to its versatility and reliability. Its unique chemical structure makes it an excellent intermediate for various synthetic pathways, facilitating the development of complex molecules. The high purity and quality of this compound ensure that it performs consistently, which is crucial for both research and industrial applications.
In pharmaceuticals, Ethyl ethoxymethylenecyanoacetate can be used to synthesize a wide range of active pharmaceutical ingredients (APIs), contributing to the development of new drugs and therapies. Its role as an intermediate means it can help streamline the synthesis process, potentially reducing costs and increasing efficiency.
For researchers involved in advanced organic synthesis, this compound offers the precision and dependability needed to achieve reproducible results. Its ability to participate in various chemical reactions makes it a valuable tool in the synthesis of complex organic molecules.
Overall, Ethyl ethoxymethylenecyanoacetate is a trusted choice for those seeking a high-performance compound for their synthetic and pharmaceutical endeavors. Whether in the lab or in production, it supports innovation and excellence in chemical synthesis.





