4-Phenylbutan-1-ol: A Key Intermediate in Salmeterol Synthesis and Pharmaceutical Applications

Discover the essential role of 4-Phenylbutan-1-ol in pharmaceutical manufacturing, particularly for Salmeterol.

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Advantages

Chemical Synthesis Versatility

The unique structure of 4-phenylbutan-1-ol allows it to be an effective starting raw material & intermediate in various organic synthesis reactions, contributing to diverse chemical applications.

Role in Pharmaceutical Supply Chain

As a crucial precursor for Salmeterol, reliable sourcing of 4-phenylbutan-1-ol ensures the consistent availability of critical medications for patients managing respiratory conditions.

Defined Quality and Purity

With an assay typically above 98.0%, this compound meets the stringent purity requirements for pharmaceutical intermediates, ensuring the efficacy and safety of downstream products.

Key Applications

Salmeterol Synthesis

The primary application of 4-phenylbutan-1-ol is its role as a key building block in the complex chemical synthesis of Salmeterol, a vital medication for asthma and COPD management.

Pharmaceutical Intermediate

Beyond Salmeterol, this compound serves as a valuable intermediate in the broader pharmaceutical industry, contributing to the development and production of various active pharmaceutical ingredients (APIs).

Organic Synthesis Reagent

Its chemical structure and reactivity make 4-phenylbutan-1-ol a useful reagent in diverse organic synthesis pathways, facilitating the creation of new and complex molecules.

Chemical Intermediate Sourcing

Reliable sourcing of this chemical intermediate is crucial for maintaining the production pipeline of essential medicines and other fine chemical products.