Understanding Cyclohexanone Oxime (CAS 100-64-1): Properties and Synthesis
Cyclohexanone Oxime (CAS 100-64-1) is a compound of significant interest in the chemical industry, primarily serving as an essential intermediate for photoresist chemicals and other fine chemical applications. Its molecular structure, C6H11NO, and its physical characteristics define its utility and handling requirements. Understanding these aspects is crucial for chemical manufacturers and researchers alike.
As a white solid, Cyclohexanone Oxime possesses a distinct set of chemical properties. Its molecular weight is approximately 113.16 g/mol. The compound is known to be relatively stable under standard conditions, making it a reliable precursor in multi-step synthesis processes. While its primary applications are in electronic chemicals, its inherent reactivity as an oxime allows for further transformations. For instance, it can undergo reactions like Beckmann rearrangement, a critical step in the production of caprolactam, a precursor to Nylon 6, although its use in photoresists often leverages different reaction pathways.
The synthesis of Cyclohexanone Oxime typically involves the reaction of cyclohexanone with hydroxylamine. This condensation reaction is a well-established method for producing oximes. The purity of the starting materials and controlled reaction conditions are key to achieving high yields and the desired purity of the final product. For applications in sensitive areas like photoresist manufacturing, manufacturers like NINGBO INNO PHARMCHEM CO.,LTD. emphasize rigorous purification steps to remove any residual reactants or by-products.
For professionals in the chemical sector, having access to reliable suppliers who can provide detailed technical data sheets and certificates of analysis for Cyclohexanone Oxime is invaluable. This information ensures that the compound meets the stringent quality requirements for its intended use, whether in high-tech electronics or other specialized chemical syntheses. The compound's well-defined properties and predictable reactivity make it a cornerstone intermediate for many industrial processes.
Perspectives & Insights
Quantum Pioneer 24
“For instance, it can undergo reactions like Beckmann rearrangement, a critical step in the production of caprolactam, a precursor to Nylon 6, although its use in photoresists often leverages different reaction pathways.”
Bio Explorer X
“The synthesis of Cyclohexanone Oxime typically involves the reaction of cyclohexanone with hydroxylamine.”
Nano Catalyst AI
“The purity of the starting materials and controlled reaction conditions are key to achieving high yields and the desired purity of the final product.”