CAS · 14273-90-6
Product Overview
Methyl 6-bromohexanoate 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 | Colorless to pale yellow clear liquid |
|---|---|
| Active assay | ≥ 98% |
| Water | ≤ 0.5% |
Applications
Methyl 6-bromohexanoate is widely used as an important intermediate in organic synthesis, pharmaceuticals, and specialty chemical production. It serves as a versatile building block for the preparation of substituted hexanoates, amides, and heterocyclic compounds. In pharmaceutical research, it is applied in the synthesis of drug candidates and bioactive molecules where the bromide functionality enables further nucleophilic substitution reactions. The compound is also utilized in polymer chemistry for the preparation of functionalized polymers, crosslinkers, and monomers. Additionally, it finds applications in agrochemical synthesis and the development of fine chemicals where controlled chain elongation and halide reactivity are required.
Benefits
Methyl 6-bromohexanoate offers several advantages due to its reactive bromide group and stable ester functionality. The bromide enables selective nucleophilic substitution, allowing for efficient functionalization of the hexanoate chain to produce diverse chemical derivatives. Its ester group provides stability under standard storage and reaction conditions, while remaining amenable to hydrolysis, reduction, or transesterification when needed. The compound is also soluble in common organic solvents, facilitating its use in a wide range of chemical reactions and synthetic protocols. These features make it a flexible and reliable intermediate for multi-step synthesis.
Conclusion
Methyl 6-bromohexanoate is a versatile intermediate with applications in pharmaceuticals, polymer chemistry, and fine chemical synthesis. Its benefits, including reactive bromide functionality, stable ester structure, and chemical versatility, make it an essential building block for complex molecule construction and functional material development. The compound continues to support innovative synthetic strategies and the creation of high-value chemical products.
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