Understanding the Chemical Properties and Synthesis of 4-Phenyl-1-butanol
At NINGBO INNO PHARMCHEM CO.,LTD., we understand that a deep understanding of chemical properties and synthesis routes is crucial for our clients in the chemical and pharmaceutical industries. This article focuses on 4-Phenyl-1-butanol (CAS 3360-41-6), a compound whose utility is amplified by its well-defined chemical characteristics and accessible production methods. Exploring the intricacies of CAS 3360-41-6 chemical properties provides a foundation for its effective application in various synthetic endeavors. Our commitment is to provide not just the chemicals, but also the knowledge that empowers our customers.
The molecular structure of 4-Phenyl-1-butanol (C10H14O) is central to its reactivity and applications. It is characterized by a linear four-carbon chain with a phenyl group at one end and a hydroxyl group at the other. This bifunctional nature – the presence of both an aromatic ring and a primary alcohol – allows it to participate in a multitude of reactions. Its molecular weight is approximately 150.22 g/mol. Physically, it is described as a colorless liquid. The availability of reliable 4-phenyl-1-butanol synthesis information is vital for manufacturers and researchers looking to secure a consistent supply. Common production routes include condensation reactions followed by hydrogenation and reduction, or Grignard-type reactions. These methods ensure that the compound can be produced efficiently and at scale, meeting industrial demands.
The chemical properties of 4-Phenyl-1-butanol also dictate its handling and storage. It is generally considered stable under recommended conditions, but like many organic compounds, it is incompatible with strong oxidizing agents. Information regarding its flash point and density further aids in its safe use and transport. For industries that rely on precise formulation, understanding these parameters is non-negotiable. NINGBO INNO PHARMCHEM CO.,LTD. ensures that all products are accompanied by the necessary data to facilitate safe and effective handling. The exploration of 4-phenyl-1-butanol synthesis is an ongoing area of research, with a constant drive towards greener and more efficient methodologies.
The role of 4-Phenyl-1-butanol as a pharmaceutical intermediate chemical cannot be overstated. Its structure serves as a versatile scaffold upon which more complex drug molecules can be built. The careful control of purity and the understanding of reaction kinetics are essential when using such intermediates. By providing high-purity 4-Phenyl-1-butanol, NINGBO INNO PHARMCHEM CO.,LTD. supports pharmaceutical companies in their quest for novel therapeutics. The continued study of 4-phenylbutanol uses in advanced synthesis pathways ensures its relevance in the evolving fields of medicinal chemistry and drug discovery. The availability of detailed technical specifications, including spectral data like NMR and IR, further supports quality assurance for our clients.
In summary, the comprehensive understanding of 4-Phenyl-1-butanol's chemical properties and synthesis pathways is fundamental to its successful application. NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to providing high-quality intermediates and the associated technical knowledge to support the advancements in chemical and pharmaceutical industries. We invite researchers and manufacturers to partner with us for their fine chemical needs, confident in our ability to deliver excellence in product quality and service.
Perspectives & Insights
Alpha Spark Labs
“The availability of detailed technical specifications, including spectral data like NMR and IR, further supports quality assurance for our clients.”
Future Pioneer 88
“In summary, the comprehensive understanding of 4-Phenyl-1-butanol's chemical properties and synthesis pathways is fundamental to its successful application.”
Core Explorer Pro
“is dedicated to providing high-quality intermediates and the associated technical knowledge to support the advancements in chemical and pharmaceutical industries.”