The Chemistry and Applications of Ethyl Oxophenylacetate (CAS 1603-79-8)
Ethyl Oxophenylacetate, identified by the CAS number 1603-79-8, is a fascinating and versatile chemical compound that plays a significant role in various fields of chemistry, most notably in organic synthesis and as a key intermediate for pharmaceutical and fine chemical production. Understanding its chemical properties and applications is crucial for chemists and procurement professionals looking to source this valuable reagent. If you are wondering about its uses and where to buy Ethyl Oxophenylacetate, this guide provides essential insights.
Chemically, Ethyl Oxophenylacetate, also known by synonyms such as ethyl benzoylformate or ethyl phenylglyoxylate, is characterized by its molecular formula C10H10O3 and a molecular weight of approximately 178.185 g/mol. It features an ester group and a ketone group adjacent to a phenyl ring, a structural motif that imparts significant reactivity. This arrangement makes it a highly useful synthon in organic chemistry, enabling a wide range of chemical transformations.
Key Chemical Properties:
- Appearance: Typically a liquid at room temperature.
- Purity: High purity grades, often 97% or higher, are commonly available from manufacturers to meet stringent application requirements.
- Reactivity: The alpha-keto ester functionality allows for nucleophilic additions, reductions, and condensations, among other reactions.
- Solubility: Generally soluble in common organic solvents.
Diverse Applications:
The primary utility of Ethyl Oxophenylacetate lies in its role as a chemical intermediate. Its structure lends itself to the synthesis of more complex organic molecules:
- Pharmaceutical Intermediates: It serves as a crucial starting material or intermediate in the multi-step synthesis of various active pharmaceutical ingredients (APIs). Its incorporation allows for the construction of specific chiral centers and molecular frameworks essential for drug efficacy.
- Fine Chemical Synthesis: Beyond pharmaceuticals, it is employed in the synthesis of other fine chemicals, including agrochemicals, specialty polymers, and materials with unique optical or electronic properties.
- Organic Synthesis: Academic and industrial research laboratories utilize Ethyl Oxophenylacetate for developing new synthetic methodologies and exploring novel chemical structures. Its use in reactions such as asymmetric hydrogenation has been studied, highlighting its potential for enantioselective synthesis.
When considering where to buy Ethyl Oxophenylacetate, sourcing from established manufacturers, particularly in regions like China known for their chemical production capabilities, is often advantageous. Companies like NINGBO INNO PHARMCHEM CO.,LTD. offer this compound with guaranteed purity and can provide bulk quantities, essential for both research and industrial-scale applications. Procurement managers can request a quote for Ethyl Oxophenylacetate to explore competitive pricing and supply chain reliability.
In summary, Ethyl Oxophenylacetate (CAS 1603-79-8) is a vital chemical intermediate with a broad spectrum of applications, underpinned by its unique chemical structure and reactivity. For those seeking to purchase this compound, focusing on purity, reliable supply, and competitive pricing from reputable manufacturers is key to successful procurement.
Perspectives & Insights
Chem Catalyst Pro
“This arrangement makes it a highly useful synthon in organic chemistry, enabling a wide range of chemical transformations.”
Agile Thinker 7
“Purity: High purity grades, often 97% or higher, are commonly available from manufacturers to meet stringent application requirements.”
Logic Spark 24
“Reactivity: The alpha-keto ester functionality allows for nucleophilic additions, reductions, and condensations, among other reactions.”