N-Boc-L-Phenylalaninol CAS 66605-57-0: A Key Intermediate in Pharmaceutical Synthesis and Biochemical Research

Discover the essential role of N-Boc-L-Phenylalaninol (CAS 66605-57-0) as a protected amino alcohol, vital for pharmaceutical synthesis and advanced biochemical research. We are a leading supplier in China.

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Advantages Offered by N-Boc-L-Phenylalaninol

Enhanced Stability and Reactivity Control

The presence of the tert-butoxycarbonyl (Boc) group on N-Boc-L-Phenylalaninol provides crucial stability and allows for controlled reactivity, preventing unwanted side reactions during complex synthesis. This is vital when pursuing specific L-Phenylalaninol derivative applications in pharmaceutical synthesis.

Versatility in Chemical Synthesis

This compound is a versatile tool in chemical synthesis, enabling the formation of intricate molecules. The Boc group's selective removal facilitates further modifications, making it an indispensable component for chemists working on various specialty organic synthesis projects.

Crucial for (R)-Amphetamine Production

N-Boc-L-Phenylalaninol is a foundational intermediate in the production of (R)-Amphetamine, highlighting its importance in the pharmaceutical industry for creating compounds with specific therapeutic actions and precise stereochemistry.

Key Applications

Pharmaceutical Synthesis

As a protected intermediate, it is essential for the controlled synthesis of active pharmaceutical ingredients (APIs), ensuring stereochemical integrity and purity, crucial for drug efficacy.

Biochemical Research

It aids in the synthesis of biochemically active compounds, facilitating research into new molecules with potential therapeutic properties and contributing to advancements in medical science.

Chiral Synthesis

Its inherent chirality and the protective Boc group make it ideal for enantioselective synthesis, a critical aspect in the development of stereochemically pure drugs and fine chemicals.

Organic Synthesis Intermediate

It serves as a versatile building block in broader organic synthesis, allowing for the creation of complex molecular structures through various reaction pathways.