CAS · 597-31-9
Product Overview
3-Hydroxy-2,2-dimethylpropanal 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 crystal |
|---|---|
| Purity (GC) | 96% min |
| Water (w/w) | 1% max |
Applications
3-Hydroxy-2,2-dimethylpropanal (CAS 597-31-9) is a versatile organic intermediate primarily used in pharmaceutical, chemical, and specialty synthesis. Its main application is as a building block in the preparation of active pharmaceutical ingredients (APIs), fine chemicals, and flavor or fragrance compounds. The molecule contains both a hydroxyl group and an aldehyde functionality, enabling it to participate in diverse chemical transformations such as condensation, oxidation, reduction, and nucleophilic addition reactions. This dual reactivity makes it particularly useful in synthesizing heterocyclic compounds, esters, and other functionalized molecules that serve as intermediates for drugs, agrochemicals, and specialty products.
Benefits
The benefits of 3-Hydroxy-2,2-dimethylpropanal stem from its multifunctionality and chemical versatility. Its hydroxyl and aldehyde groups allow for selective and efficient chemical modifications, enabling the construction of complex molecules with high precision and minimal synthetic steps. In pharmaceutical synthesis, it facilitates the production of intermediates with enhanced bioactivity and specificity, supporting drug development. Its use in flavor and fragrance synthesis contributes to the creation of compounds with desirable olfactory or taste profiles, often at low concentrations. Additionally, its relatively stable structure under standard storage conditions simplifies handling and integration into industrial-scale processes, improving both safety and efficiency.
Conclusion
In conclusion, 3-Hydroxy-2,2-dimethylpropanal is an important intermediate in chemical, pharmaceutical, and specialty synthesis. Its dual functionality, versatility, and stability make it an indispensable building block for constructing complex molecules, enabling efficient production of high-value compounds. By supporting precision, yield, and innovation in synthetic applications, it plays a significant role in modern chemical and pharmaceutical manufacturing.
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