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Product Line: Pharmaceutical Chemicals

N-methoxymethylamine

CAS 1117-97-1

Molecular structure of N-methoxymethylamine

CAS · 1117-97-1

01

Product Overview

N-methoxymethylamine is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance Colorless liquid
Purity 98% min
Water content 1.0% max
03

Applications

N-Methoxymethylamine is primarily used as a building block and reagent in organic synthesis. It is widely applied in the preparation of imines, oximes, and methoxymethyl-protected intermediates. The compound serves as a nucleophilic amine source for the formation of N-substituted derivatives, and it is frequently employed in medicinal chemistry to synthesize bioactive molecules and pharmaceutical intermediates. Additionally, it is used in fine chemical synthesis and agrochemical research for constructing functionalized amines, heterocycles, and other nitrogen-containing compounds. Its reactivity and ease of derivatization make it valuable in multistep synthetic routes requiring selective nitrogen incorporation.

04

Benefits

The primary benefits of N-Methoxymethylamine stem from its high nucleophilicity and versatility as an aminating agent. Its methoxymethyl group provides mild protection to the nitrogen atom, allowing selective reactions and controlled deprotection under mild conditions. The compound is a stable, liquid reagent that is easy to handle and measure, supporting reproducible reactions in both laboratory and industrial processes. Its reactivity enables efficient formation of N-substituted compounds with minimal by-products, improving yields and facilitating downstream transformations. These properties make it a reliable tool for chemists in synthesizing structurally diverse amines and heterocyclic derivatives.

05

Conclusion

N-Methoxymethylamine (CAS 1117-97-1) is a versatile and effective reagent in organic and medicinal chemistry. Its combination of nucleophilicity, nitrogen protection, and synthetic flexibility allows for efficient preparation of N-substituted compounds, heterocycles, and pharmaceutical intermediates. By enabling controlled and high-yield transformations, it serves as a valuable building block for diverse chemical syntheses.

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