(4R)-4-Phenyl-3-propanoyl-1,3-oxazolidin-2-one: A Key Heterocyclic Intermediate
Discover the essential properties and applications of this high-purity organic synthesis building block.
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(4R)-4-phenyl-3-propanoyl-1,3-oxazolidin-2-one
This compound is a vital heterocyclic building block, crucial for various advanced organic synthesis applications. Its stability and high purity make it an ideal choice for researchers and chemists demanding reliable results in their chemical intermediate work.
- Discover the synthesis of chiral compounds using this key organic intermediate.
- Explore the properties of (4R)-4-phenyl-3-propanoyl-1,3-oxazolidin-2-one CAS 160695-26-1 in your next research project.
- Source high-purity oxazolidinone derivatives for demanding synthetic pathways.
- Understand the applications of this versatile building block in pharmaceutical synthesis reagents.
Key Advantages
Exceptional Purity
Achieve superior reaction outcomes with a product guaranteed to be ≥95% pure, essential for sensitive organic synthesis.
Chemical Stability
Benefit from a compound that remains stable at room temperature, simplifying handling and storage in your lab, perfect for chemical intermediate needs.
Versatile Building Block
Leverage this compound's structure for a wide range of applications in advanced organic synthesis.
Key Applications
Research and Development
Crucial for laboratory research, enabling the exploration of new synthetic routes and material properties for heterocyclic compounds.
Pharmaceutical Synthesis
Serves as a critical component in the synthesis of complex pharmaceutical intermediates, aiding in drug discovery and development.
Fine Chemical Manufacturing
Utilized in the production of specialized fine chemicals, highlighting its role as a versatile building block.
Material Science
Potential applications in the development of new materials where specific molecular structures are required, aiding organic synthesis.
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