CAS · 918-02-5
Product Overview
N,N-Dimethyl-tert-butylamine 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 or light yellow liquid |
|---|---|
| Purity (GC): | 98% min |
Applications
N,N-Dimethyl-tert-butylamine is a tertiary amine widely used as a chemical intermediate and catalyst in organic synthesis and industrial applications. It serves as a base in alkylation, acylation, and condensation reactions, facilitating efficient formation of carbon-nitrogen and carbon-carbon bonds. The compound is also used in the production of pharmaceuticals, agrochemicals, and specialty chemicals, where it acts as a building block or reaction promoter. Additionally, it finds application in polymerization processes, particularly as a catalyst or stabilizer in the synthesis of polyurethane, epoxy, and other polymeric materials. In laboratory research, N,N-Dimethyl-tert-butylamine is used as a reagent to study reaction mechanisms and optimize synthetic pathways.
Benefits
The compound offers several advantages due to its high basicity, steric hindrance, and chemical stability. Its tertiary amine structure allows selective deprotonation and catalytic activity without forming strong nucleophilic byproducts, making reactions cleaner and more efficient. The bulky tert-butyl group provides steric protection, minimizing side reactions and improving selectivity in complex syntheses. N,N-Dimethyl-tert-butylamine is highly soluble in common organic solvents and demonstrates excellent thermal and chemical stability, ensuring reliable performance in various reaction conditions. Its versatility as both a base and intermediate enables wide applicability in pharmaceuticals, agrochemicals, and polymer industries.
Conclusion
N,N-Dimethyl-tert-butylamine is a valuable tertiary amine used as a catalyst, base, and intermediate in organic synthesis, pharmaceutical production, and polymer chemistry. Its combination of high reactivity, steric selectivity, and chemical stability makes it indispensable for efficient, selective, and high-yield chemical transformations. The compound continues to support innovation in industrial processes, research, and advanced material development.
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