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Benzyl(prop-2yn-1-yl)sulfone is an organic chemical compound characterized by its unique structure, which features a benzyl group attached to a prop-2yn-1-yl (propargyl) group through a sulfonyl (-SO2-) bridge. This molecule is composed of a benzene ring with a methyl group attached to it, which is connected to a propargyl group, a three-carbon chain with a triple bond at one end. The sulfonyl group provides a stable and polar linkage between the two moieties, enhancing the compound's reactivity and solubility properties. Benzyl(prop-2yn-1-yl)sulfone is utilized in various chemical reactions and synthesis processes, particularly in the preparation of pharmaceuticals and other specialty chemicals, due to its versatile functional groups and potential for further modification.

4331-49-1

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4331-49-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 4331-49-1 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 4,3,3 and 1 respectively; the second part has 2 digits, 4 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 4331-49:
(6*4)+(5*3)+(4*3)+(3*1)+(2*4)+(1*9)=71
71 % 10 = 1
So 4331-49-1 is a valid CAS Registry Number.

4331-49-1Relevant academic research and scientific papers

Highly atom-economic, catalyst- and solvent-free oxidation of sulfides into sulfones using 30% aqueous H2O2

Jereb, Marjan

supporting information, p. 3047 - 3052,6 (2020/09/16)

Highly atom-efficient oxidation of sulfides into sulfones under solvent- and catalyst-free reaction conditions using a 30% aqueous solution of H 2O2 at 75 °C is reported. A structurally diverse set of phenyl alkyl-, phenyl benzyl-, benzyl alkyl-, dialkyl-, heteroaryl alkyl- and cyclic sulfides were transformed into sulfones regardless of the aggregate state and electronic nature of the substituents. In spite of the heterogeneous reaction mixtures throughout the work, no difficulties with stirring and reaction progress were noted. In numerous cases, only 10 mol% excess of H 2O2 was used, thus contributing considerably to the high atom economy of the process. Some solid substrates required a variable excess of hydrogen peroxide; however, the reactions were performed strictly without organic solvents. The transformation was demonstrated to be amenable for scale-up with both liquid and solid sulfides. In addition, isolation and purification of the crude products can be simply done with only filtration and crystallization.

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