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Atomfair 6-Fluorospiro[2.5]octan-1-amine C8H14FN
Description 6-Fluorospiro[2.5]octan-1-amine (CAS: 1461714-79-3) is a highly specialized fluorinated spirocyclic amine compound with the molecular formula C8H14FN. This unique scaffold features a spiro[2.5]octane core structure with a fluorine substituent at the 6-position and an amine group at the 1-position, offering distinct steric and electronic properties for advanced synthetic applications. With a purity grade suitable for research and development, this compound is ideal for medicinal chemistry, agrochemical research, and material science applications. Its spirocyclic architecture provides conformational rigidity, making it a valuable building block for drug discovery and ligand design. Available in various quantities, this product is rigorously tested for quality…
Description
Description
6-Fluorospiro[2.5]octan-1-amine (CAS: 1461714-79-3) is a highly specialized fluorinated spirocyclic amine compound with the molecular formula C8H14FN. This unique scaffold features a spiro[2.5]octane core structure with a fluorine substituent at the 6-position and an amine group at the 1-position, offering distinct steric and electronic properties for advanced synthetic applications. With a purity grade suitable for research and development, this compound is ideal for medicinal chemistry, agrochemical research, and material science applications. Its spirocyclic architecture provides conformational rigidity, making it a valuable building block for drug discovery and ligand design. Available in various quantities, this product is rigorously tested for quality and consistency to meet the demands of scientific research.
- CAS No: 1461714-79-3
- Molecular Formula: C8H14FN
- Molecular Weight: 143.20
- Exact Mass: 143.111027613
- Monoisotopic Mass: 143.111027613
- IUPAC Name: 6-fluorospiro[2.5]octan-2-amine
- SMILES: C1CC2(CCC1F)CC2N
- Synonyms: 6-Fluorospiro[2.5]octan-1-amine, 1461714-79-3, EN300-136297
Application
6-Fluorospiro[2.5]octan-1-amine serves as a versatile intermediate in pharmaceutical research, particularly in the design of bioactive molecules targeting CNS disorders due to its spirocyclic rigidity and fluorine-enhanced properties. Its unique structure is valuable for developing novel agrochemicals with improved stability and activity. Researchers also utilize this compound in material science for creating fluorinated polymers with tailored physical characteristics.
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