CAS · 54646-75-2
Product Overview
(8-Bromooctyl)benzene is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance | Light yellow liquid |
|---|---|
| Purity | 97% min |
Applications
(8-Bromooctyl)benzene (CAS 54646-75-2) is a brominated alkylbenzene widely used as an intermediate in organic synthesis, pharmaceuticals, and material science. Its structure, featuring a bromooctyl chain attached to a phenyl ring, makes it suitable for nucleophilic substitution, cross-coupling reactions, and the preparation of functionalized aromatic derivatives. In pharmaceuticals, it is used to synthesize bioactive molecules where long alkyl chains improve lipophilicity, membrane permeability, or binding interactions. In material science, it serves as a precursor for surfactants, polymer modifiers, and specialty coatings where hydrophobic chains and aromatic groups contribute to surface properties and structural performance. Additionally, it is applied in fine chemical synthesis for creating tailored intermediates for complex molecules.
Benefits
The benefits of (8-bromooctyl)benzene stem from its reactive bromine, hydrophobic chain, and aromatic structure. The bromine atom provides a versatile reactive site for substitution or cross-coupling reactions, allowing the attachment of various functional groups. The octyl chain imparts lipophilicity and flexibility, enhancing solubility in organic media and membrane interactions in bioactive compounds. The phenyl ring contributes chemical stability, rigidity, and electronic properties, which are valuable in both medicinal and material applications. Its combined features make it a robust and adaptable intermediate for multi-step syntheses and functional molecule design.
Conclusion
In summary, (8-bromooctyl)benzene is a versatile brominated intermediate used in pharmaceuticals, materials, and fine chemical synthesis. Its applications include functionalized aromatic derivatives, surfactants, polymer modifiers, and bioactive molecules, while its benefits lie in reactive bromine, hydrophobic chain properties, and aromatic stability. As demand grows for multifunctional intermediates in chemical synthesis, this compound remains a practical and valuable building block.
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