(R)-(-)-4-Phenyl-2-oxazolidinone: Your Key to Asymmetric Synthesis
(R)-(-)-4-Phenyl-2-oxazolidinone (CAS 90319-52-1) is a cornerstone for precision in advanced organic chemistry.
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(R)-4-Phenyl-2-oxazolidinone
This high-purity compound is a vital chiral building block, indispensable for achieving enantioselectivity in complex chemical transformations. Its robust structure and reliable performance make it a preferred choice for researchers and manufacturers seeking to produce chirally pure end-products.
- As a critical component in asymmetric synthesis, it facilitates the creation of enantiomerically pure compounds, a key requirement in pharmaceutical development.
- This chiral auxiliary enables precise stereochemical control in reactions such as conjugate additions and cycloadditions, ensuring high diastereomeric excess.
- It plays a pivotal role in the synthesis of beta-lactam antibiotics and alpha-amino acids, foundational elements in drug discovery and production.
- The high purity (≥99%) of (R)-4-Phenyl-2-oxazolidinone guarantees reproducible and reliable results in demanding synthetic pathways.
Advantages It Brings
Enhanced Stereoselectivity
Leveraging the distinct stereochemistry of (R)-4-phenyl-2-oxazolidinone, chemists can achieve superior facial selectivity and diastereoselectivity in critical bond-forming reactions, crucial for producing pure drug isomers.
Versatile Pharmaceutical Intermediate
As a key pharmaceutical intermediate, it is instrumental in the multi-step synthesis of APIs, contributing significantly to the development of new therapeutic agents and the efficient production of existing ones.
Facilitates Complex Synthesis
Its application in complex organic synthesis, including stereoselective cycloadditions and conjugate additions, simplifies the creation of intricate molecular architectures, often reducing the number of synthetic steps required.
Key Applications
Asymmetric Synthesis
Crucial for controlling stereochemistry, enabling the synthesis of enantiomerically pure target molecules in pharmaceutical and fine chemical industries.
Pharmaceutical Development
Serves as a vital building block for synthesizing complex Active Pharmaceutical Ingredients (APIs) and intermediates, particularly for antibiotics and neurological drugs.
Chiral Building Block
Its inherent chirality makes it an ideal starting material for creating other enantiomerically enriched compounds and chiral auxiliaries.
Beta-Lactam Antibiotics
A key precursor in the synthesis pathways of beta-lactam antibiotics, contributing to the development of effective treatments for bacterial infections.
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