CAS · 50530-12-6
Product Overview
10-Bromodecanoic acid 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 | Brown crystalline powder |
|---|---|
| Purity | 95% min |
| Water | 1.0% max |
| Melting Point | 40 °C min |
Applications
10-Bromodecanoic acid (CAS 50530-12-6) is a halogenated fatty acid widely used as a chemical intermediate in organic synthesis and specialty chemical production. Its primary application is in the synthesis of pharmaceuticals, agrochemicals, and fine chemicals, where the bromine atom provides a reactive site for nucleophilic substitution, coupling, and functionalization reactions. The carboxylic acid group also allows for esterification, amidation, and other derivatization reactions, making it versatile for constructing complex molecules. Additionally, 10-Bromodecanoic acid is employed in the preparation of surfactants, polymeric materials, and bioactive derivatives, where its long alkyl chain imparts hydrophobic character while enabling chemical modifications at the bromine site.
Benefits
The benefits of 10-Bromodecanoic acid are associated with its dual functionality and synthetic versatility. The bromine atom provides a highly reactive site for selective chemical transformations, enabling the efficient synthesis of diverse derivatives. The carboxylic acid group allows further modification, improving solubility, reactivity, or incorporation into larger molecular frameworks. Its long hydrophobic chain can enhance lipophilicity or membrane interaction in bioactive molecules, which is beneficial in pharmaceutical or agrochemical applications. Furthermore, its stability under standard storage conditions ensures reliable handling in both laboratory and industrial-scale processes, supporting high-yield, reproducible synthesis of target compounds.
Conclusion
In conclusion, 10-Bromodecanoic acid is a valuable intermediate in organic, pharmaceutical, and material chemistry. Its bromine and carboxylic acid functionalities, combined with its hydrophobic alkyl chain, make it versatile for constructing complex molecules and functional derivatives. By enabling efficient, selective, and high-yield chemical transformations, it plays a significant role in modern chemical synthesis and industrial applications.
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