High-Purity 4-Phenyl-2-Oxazolidinone: A Key Chiral Intermediate
Unlock advanced pharmaceutical synthesis and asymmetric reactions with this essential chiral building block.
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4-Phenyl-2-Oxazolidinone
As a vital pharmaceutical intermediate, this compound excels in asymmetric chiral synthesis, crucial for developing enantiomerically pure drugs. Its inherent oxazolidinone structure is instrumental in introducing precise chirality into synthetic pathways, making it a preferred choice for creating specific stereoisomers with superior biological activity.
- Leverage the power of chiral building block synthesis to create complex molecules with controlled stereochemistry.
- Utilize its role in pharmaceutical development for enantiomerically pure drug creation, ensuring higher efficacy and safety profiles.
- Benefit from the unique oxazolidinone structure's ability to facilitate the introduction of chirality in synthetic routes.
- Explore applications in asymmetric synthesis, advancing your research in creating molecules with desired optical activity.
Product Advantages
Enhanced Chiral Control
Achieve superior control over stereochemistry in your reactions, a cornerstone of effective chiral building block synthesis.
Broad Pharmaceutical Application
Support the precise development of enantiomerically pure drugs through its reliable performance in pharmaceutical development.
Versatile Synthetic Utility
Its ability to introduce chirality makes it an indispensable tool for various asymmetric synthesis applications in organic chemistry.
Key Applications
Pharmaceutical Development
Essential for the development of enantiomerically pure drugs, contributing to improved therapeutic outcomes.
Asymmetric Synthesis
Enables chemists to perform precise asymmetric synthesis, crucial for creating molecules with specific optical activity.
Neuroscience Research
A key compound for studies in neuroscience, aiding in the investigation of neurotransmitters and potential treatments.
Material Science
Used in formulating advanced polymers and materials that require specific mechanical and chiral properties.
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