CAS · 4408-64-4
Product Overview
N-Methyliminodiacetic 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 | White crystal |
|---|---|
| Assay | 99% min |
| Loss on drying | 0.5% max |
Applications
N-Methyliminodiacetic acid (MIDA) is widely used as a chelating agent in chemical synthesis, particularly for stabilizing boronic acids in MIDA boronate chemistry. It serves as an intermediate in the production of specialty chemicals, pharmaceuticals, and agrochemicals. In laboratory and industrial synthesis, MIDA facilitates controlled coupling reactions by protecting reactive boronic acid groups, allowing for stepwise construction of complex molecules. It is also employed in metal ion sequestration, water treatment, and as a ligand in coordination chemistry research.
Benefits
The key benefits of N-Methyliminodiacetic acid include its strong chelating ability, which enhances the stability and solubility of boronic acid derivatives and metal ions. Its use in MIDA boronate chemistry enables precise and efficient multistep syntheses, reducing side reactions and improving yields in pharmaceutical and chemical production. Additionally, its relatively low toxicity and water solubility make it convenient and safe to handle in both laboratory and industrial environments. The compound's versatility allows it to support a wide range of chemical transformations while maintaining stability under various reaction conditions.
Conclusion
N-Methyliminodiacetic acid is a valuable chemical tool in modern synthetic chemistry, particularly for stabilizing boronic acids and facilitating controlled chemical reactions. Its chelating properties, stability, and safety make it essential in pharmaceutical synthesis, specialty chemical production, and coordination chemistry research. By enabling more efficient and selective chemical processes, MIDA contributes to innovation and quality in both research and industrial applications.
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