CAS · 940868-64-4
Product Overview
Bis(2-methoxy ethyl)azodicarboxylate 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 | Yellow crystalline powder |
|---|---|
| Assay | 95% min |
| NMR | Conformed to standard |
Applications
Bis(2-methoxyethyl)azodicarboxylate is primarily used as a reagent in organic synthesis, particularly in Mitsunobu reactions, where it facilitates the conversion of alcohols to esters, ethers, and other functionalized compounds with inversion of stereochemistry. It serves as an alternative to traditional azodicarboxylates, providing enhanced solubility and handling properties in various reaction systems. The compound is employed in the synthesis of pharmaceuticals, agrochemicals, and fine chemicals where stereoselective transformations are required. In research laboratories, it is used to study reaction mechanisms, optimize stereoselective processes, and develop new methodologies for complex molecule construction.
Benefits
The compound offers several advantages due to its chemical structure and functional properties. Its 2-methoxyethyl groups enhance solubility in common organic solvents, allowing smoother reaction handling and improved compatibility with diverse substrates. It exhibits predictable reactivity in Mitsunobu-type reactions, supporting high yields and stereoselectivity. Additionally, the compound is more stable and easier to handle than some traditional azodicarboxylates, reducing risks associated with storage and experimental use. Its well-defined composition ensures reproducibility, which is critical in laboratory research and industrial-scale synthesis. These properties make it a reliable reagent for efficient and controlled organic transformations.
Conclusion
Bis(2-methoxyethyl)azodicarboxylate is a valuable reagent for stereoselective organic synthesis and Mitsunobu-type transformations. Its applications in pharmaceutical and fine chemical synthesis, combined with benefits such as enhanced solubility, stability, and predictable reactivity, make it an essential tool for constructing complex molecules. The compound continues to support efficient, high-yield, and reproducible chemical processes in both research and industrial settings.
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