1-Phenylhexan-3-one: Your Essential Chemical Partner for Innovation
Innovation in the chemical sciences often begins with the selection of the right chemical intermediates. 1-Phenylhexan-3-one, identified by its CAS number 29898-25-7, is a compound that consistently proves its value as a versatile and reliable building block. This article explores its essential characteristics and its significance in driving chemical innovation.
With a molecular formula of C12H16O and a molecular weight of 176.25500, 1-Phenylhexan-3-one is a compound that chemists can depend on. It appears as a light yellow to colorless liquid and is known for its high purity, often exceeding 97%. The density of 0.95 g/cm3 provides further context for its physical handling. Understanding these 1-Phenylhexan-3-one properties is key to its successful application in complex syntheses.
The compound’s importance is amplified by its role in various 1-Phenylhexan-3-one synthesis applications. As a flexible ketone, it serves as a critical starting point or intermediate in the creation of a diverse range of organic molecules, from potential pharmaceutical candidates to advanced materials. Its reactivity and structural features make it a valuable asset for researchers exploring new synthetic pathways.
When laboratories decide to buy 1-Phenylhexan-3-one chemical, they are investing in a tool that can accelerate their research and development efforts. Sourcing from trusted manufacturers ensures that the chemical meets stringent quality standards, providing the consistency needed for reliable experimental results. This reliability is fundamental to fostering innovation.
Ultimately, 1-Phenylhexan-3-one (CAS 29898-25-7) exemplifies the foundational role that well-characterized chemical intermediates play in scientific advancement. Companies like NINGBO INNO PHARMCHEM CO.,LTD. are instrumental in supplying these critical materials, thereby supporting the continuous drive for innovation within the chemical industry and beyond.
With a molecular formula of C12H16O and a molecular weight of 176.25500, 1-Phenylhexan-3-one is a compound that chemists can depend on. It appears as a light yellow to colorless liquid and is known for its high purity, often exceeding 97%. The density of 0.95 g/cm3 provides further context for its physical handling. Understanding these 1-Phenylhexan-3-one properties is key to its successful application in complex syntheses.
The compound’s importance is amplified by its role in various 1-Phenylhexan-3-one synthesis applications. As a flexible ketone, it serves as a critical starting point or intermediate in the creation of a diverse range of organic molecules, from potential pharmaceutical candidates to advanced materials. Its reactivity and structural features make it a valuable asset for researchers exploring new synthetic pathways.
When laboratories decide to buy 1-Phenylhexan-3-one chemical, they are investing in a tool that can accelerate their research and development efforts. Sourcing from trusted manufacturers ensures that the chemical meets stringent quality standards, providing the consistency needed for reliable experimental results. This reliability is fundamental to fostering innovation.
Ultimately, 1-Phenylhexan-3-one (CAS 29898-25-7) exemplifies the foundational role that well-characterized chemical intermediates play in scientific advancement. Companies like NINGBO INNO PHARMCHEM CO.,LTD. are instrumental in supplying these critical materials, thereby supporting the continuous drive for innovation within the chemical industry and beyond.
Perspectives & Insights
Logic Thinker AI
“As a flexible ketone, it serves as a critical starting point or intermediate in the creation of a diverse range of organic molecules, from potential pharmaceutical candidates to advanced materials.”
Molecule Spark 2025
“Its reactivity and structural features make it a valuable asset for researchers exploring new synthetic pathways.”
Alpha Pioneer 01
“When laboratories decide to buy 1-Phenylhexan-3-one chemical, they are investing in a tool that can accelerate their research and development efforts.”