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Specifications
| Appearance | Colorless to light yellow liquid |
| Purity (GC) | 98% min |
| Conclusion | Conforms with Specification |
| GC Chromatography | GC7820 |
| GC Column | Capillary SE-54, 30m × 0.32mm × 0.5µm |
| Column Temperature | 50℃ (1 min), ramp 20℃/min to 150℃ |
| Injection Temperature | 150℃ |
| Detector Temperature | 250℃ |
Applications
N-Isopropylmethylamine (CAS 4747-21-1) is a secondary amine widely used as a building block and reagent in organic synthesis, pharmaceuticals, and agrochemical research. In medicinal chemistry, it serves as an intermediate for the synthesis of drugs, including alkaloid derivatives, CNS-active compounds, and other bioactive molecules. It is also applied in the preparation of agrochemical intermediates such as herbicides, insecticides, and fungicides. Additionally, N-isopropylmethylamine is used as a base in chemical reactions, a catalyst in alkylation and acylation processes, and a precursor for specialty chemicals in industrial and laboratory-scale syntheses.
Benefits
The benefits of N-isopropylmethylamine come from its moderate nucleophilicity, steric properties, and volatility. As a secondary amine, it provides selective reactivity in alkylation and acylation reactions while minimizing side reactions compared to primary amines. Its branched isopropyl group can influence steric interactions in target molecules, enhancing selectivity and stability of synthesized compounds. The compound's liquid state and reasonable boiling point make it easy to handle, measure, and incorporate into various reaction systems. Its multifunctional utility as both a reagent and building block accelerates synthesis and streamlines the development of pharmaceuticals, agrochemicals, and specialty chemicals.
Conclusion
In summary, N-isopropylmethylamine is a versatile secondary amine used in pharmaceuticals, agrochemicals, and fine chemical synthesis. Its applications include intermediate synthesis, base catalysis, and reagent use, while its benefits lie in selective reactivity, steric modulation, and ease of handling. With these properties, N-isopropylmethylamine continues to be an important tool for efficient and reliable chemical synthesis in research and industrial settings.

