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Product Line: Pharmaceutical Chemicals

Sodium methanesulfonate

CAS 2386-57-4

Molecular structure of Sodium methanesulfonate

CAS · 2386-57-4

01

Product Overview

Sodium methanesulfonate 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 White Solid Powder
Purity 99% min
03

Applications

Sodium methanesulfonate (CAS 2386-57-4) is a simple sulfonate salt widely used in organic synthesis, chemical manufacturing, and industrial processes. It serves as a mild nucleophile in substitution reactions, particularly for the introduction of methanesulfonyl (mesyl) groups into organic molecules. In pharmaceuticals, it is applied as a reagent or intermediate for synthesizing active pharmaceutical ingredients (APIs) and fine chemicals. In materials science, it can be used in the preparation of specialty surfactants, ionic liquids, and polymeric sulfonates, where the methanesulfonate moiety imparts solubility, ionic character, and thermal stability. It also finds application in analytical chemistry as a standard or buffer component in certain protocols.

04

Benefits

The benefits of sodium methanesulfonate stem from its chemical stability, water solubility, and versatility as a nucleophilic sulfonate source. Its salt form makes it easy to handle, store, and incorporate into aqueous or polar reaction systems, reducing the need for hazardous organic reagents. It enables mild reaction conditions, minimizing side reactions and degradation of sensitive molecules. In polymer or surfactant synthesis, it imparts ionic character and solubility, enhancing material performance. Its non-volatile, non-corrosive nature also makes it safer for laboratory and industrial use, while maintaining high reactivity in chemical transformations.

05

Conclusion

In summary, sodium methanesulfonate is a valuable reagent and intermediate in organic synthesis, pharmaceuticals, and material science. Its applications include nucleophilic substitution, API synthesis, and incorporation into ionic or functionalized polymers, while its benefits lie in stability, solubility, versatility, and safe handling. As demand grows for efficient and reliable sulfonate reagents, sodium methanesulfonate remains an important tool in both research and industrial chemistry.

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