CAS · 3685-22-1
Product Overview
Cis-4-hydroxycyclohexanecarboxylic 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: | Off-white or brown solid |
|---|---|
| Purity: | 95% min |
Applications
Cis-4-hydroxycyclohexanecarboxylic acid (CAS 3685-22-1) is a cyclohexane-based hydroxy acid widely used as an intermediate in organic synthesis and pharmaceutical research. Its structure, featuring both a hydroxyl and a carboxylic acid group on a cyclohexane ring, provides multiple reactive sites for derivatization. It is commonly employed in the synthesis of chiral building blocks, enzyme inhibitors, and bioactive heterocycles. In medicinal chemistry, it serves as a precursor for the preparation of drugs and therapeutic agents with enhanced stereochemical control. Additionally, it is used in polymer and materials research to introduce functional groups that improve solubility, reactivity, or mechanical properties of specialty polymers and coatings.
Benefits
The benefits of cis-4-hydroxycyclohexanecarboxylic acid arise from its multifunctional structure and stereochemical specificity. The hydroxyl and carboxyl groups allow for versatile chemical transformations, enabling the synthesis of complex molecules with precise stereochemistry. Its cyclohexane ring provides rigidity, which can enhance the stability and activity of derived compounds in pharmaceuticals. In synthetic applications, it facilitates the preparation of enantiomerically pure intermediates, which are critical for developing drugs with high efficacy and reduced side effects. Its compatibility with a range of chemical reactions also makes it a reliable and efficient intermediate in both laboratory and industrial-scale syntheses.
Conclusion
Cis-4-hydroxycyclohexanecarboxylic acid is a versatile and stereochemically defined intermediate with significant applications in pharmaceuticals, organic synthesis, and materials science. Its multifunctional structure enables the efficient preparation of bioactive molecules, chiral intermediates, and functionalized polymers. By providing both chemical versatility and stereochemical control, it continues to be a valuable tool in research, drug development, and advanced chemical manufacturing.
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