1-Fluoro-3-bromopropane: A Key Intermediate in Organic Synthesis
Unlock complex molecular structures with this versatile building block for pharmaceuticals and specialty chemicals.
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1-Fluoro-3-bromopropane
1-Fluoro-3-bromopropane, identified by its CAS number 352-91-0, is a critical colorless, transparent liquid intermediate extensively used in organic synthesis. Its molecular formula is C3H6BrF, and it has a molecular weight of 140.98200.
- This compound serves as a vital 1-Fluoro-3-bromopropane organic synthesis intermediate, facilitating the creation of intricate molecular frameworks.
- Explore the detailed 1-Fluoro-3-bromopropane chemical properties, including a density of 1.458 g/cm³, a boiling point of approximately 99-101°C, and a flash point of 16.4°C, ensuring its specific utility.
- High purity standards are crucial; therefore, a typical assay of ≥99.0% and moisture content below 0.05% are maintained, ensuring reliability for downstream applications.
- As a key 1-Fluoro-3-bromopropane pharmaceutical intermediate, it is instrumental in synthesizing active pharmaceutical ingredients (APIs) where precision is paramount.
Advantages It Brings
Enhanced Synthesis Efficiency
Leveraging 1-Fluoro-3-bromopropane in organic synthesis pathways allows chemists to efficiently build complex molecules, making it a sought-after building block.
Pharmaceutical Breakthroughs
As a critical 1-Fluoro-3-bromopropane pharmaceutical intermediate, its unique structure aids in the development of novel therapeutics, supporting global health initiatives.
Versatile Material Design
The compound's role in creating fluorinated compounds contributes to materials with enhanced stability and resistance, pushing innovation in material science.
Key Applications
Pharmaceutical Synthesis
Used as a crucial building block for synthesizing Active Pharmaceutical Ingredients (APIs), contributing to the development of new medicines.
Specialty Chemicals Production
Enables the creation of specialized fluorinated compounds valued for their unique properties like stability and resistance to degradation.
Agrochemical Development
Acts as an intermediate in the synthesis of agrochemicals, aiding in the creation of advanced crop protection solutions.
Research and Development
Essential in R&D labs for exploring new reaction pathways and developing novel organic molecules.