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63372-86-1

Magnesium,bis[[(2,3-dihydro-1,5-dimethyl-3-oxo-2-phenyl-1H-pyrazol-4-yl)methylamino-kN]methanesulfonato-kO]-, (T-4)-

Catalog#: AR01CCYC  |   CAS#: 63372-86-1  |   MDL#: MFCD01747474  |   MF: C26H32MgN6O8S2  |   MW: 645.0027

Packsize Purity Price Availability Quantity
10mg 95% $34.00 Global Stock Buy Now Add To Cart
25mg 95% $57.00 Global Stock Buy Now Add To Cart
50mg 95% $91.00 Global Stock Buy Now Add To Cart
100mg 95% $158.00 Global Stock Buy Now Add To Cart
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Catalog Number AR01CCYC
Chemical Name Magnesium,bis[[(2,3-dihydro-1,5-dimethyl-3-oxo-2-phenyl-1H-pyrazol-4-yl)methylamino-kN]methanesulfonato-kO]-, (T-4)-
CAS Number 63372-86-1
Molecular Formula C26H32MgN6O8S2
Molecular Weight 645.0027
MDL Number MFCD01747474
SMILES Cn1n(c2ccccc2)c(=O)c(c1C)[N]1(C)CS(=O)(=O)[O-][Mg+]21OS(=O)(=O)C[N]2(C)c1c(=O)n(n(c1C)C)c1ccccc1

Metamizole magnesium, also known as dipyrone magnesium, is commonly used in chemical synthesis as a versatile reagent. Its unique properties make it a valuable tool in several synthetic processes across various industries.In organic chemistry, metamizole magnesium serves as a potent nucleophile, enabling the formation of new carbon-carbon bonds through nucleophilic addition reactions. This reactivity is particularly useful in the synthesis of complex organic molecules, such as pharmaceutical intermediates and natural products.Furthermore, metamizole magnesium can participate in Grignard reactions, where it acts as a strong base and a source of carbon nucleophiles. This reaction is pivotal in forming carbon-carbon bonds and is widely employed in the preparation of alcohol, ketones, and other functional groups.Additionally, the unique coordination chemistry of metamizole magnesium allows for the selective activation of certain functional groups in a molecule, facilitating regioselective and stereoselective transformations. This selectivity is crucial in the controlled synthesis of chiral compounds and asymmetric synthesis.Overall, the application of metamizole magnesium in chemical synthesis showcases its versatility and importance in the creation of complex molecular structures with high precision and efficiency.
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