“…32 White solid, 27 mg, 51% yield. 1 4,4′-Sulfonylbis(chlorobenzene) (3z). 37a White solid, 32 mg, 55% yield.…”
Section: ■ Conclusionmentioning
confidence: 99%
“…So far, some diaryl sulfone-containing molecules have been successfully used in medical and commercial applications, such as dapsone, SR 33805 oxalate, and CX157 (Figure ). , In addition, the sulfone moiety is an important synthetic target and widely used as a versatile synthetic intermediate for organic chemistry. Therefore, many synthetic methodologies have been developed for the preparation of sulfones, for example, oxidation of sulfides, Friedel-Crafts-type sulfonation with sulfonyl halides, and coupling of sulfinic acid salts. − …”
A simple and efficient electrochemical sulfonylation of organoboronic acids with sodium arylsulfinate salts has been reported for the first time. A variety of aryl, heteroaryl, and alkenylsulfones were obtained in good to excellent yields via a simple electrochemical sulfonylation of various arylboronic acids, heterocyclic boronic acids, or alkenylboronic acids with sodium arylsulfinate at room temperature in 5 h under the catalyst-free and additive-free conditions. A plausible mechanism has been proposed based on various radical-trapping and CV control experiments.
“…32 White solid, 27 mg, 51% yield. 1 4,4′-Sulfonylbis(chlorobenzene) (3z). 37a White solid, 32 mg, 55% yield.…”
Section: ■ Conclusionmentioning
confidence: 99%
“…So far, some diaryl sulfone-containing molecules have been successfully used in medical and commercial applications, such as dapsone, SR 33805 oxalate, and CX157 (Figure ). , In addition, the sulfone moiety is an important synthetic target and widely used as a versatile synthetic intermediate for organic chemistry. Therefore, many synthetic methodologies have been developed for the preparation of sulfones, for example, oxidation of sulfides, Friedel-Crafts-type sulfonation with sulfonyl halides, and coupling of sulfinic acid salts. − …”
A simple and efficient electrochemical sulfonylation of organoboronic acids with sodium arylsulfinate salts has been reported for the first time. A variety of aryl, heteroaryl, and alkenylsulfones were obtained in good to excellent yields via a simple electrochemical sulfonylation of various arylboronic acids, heterocyclic boronic acids, or alkenylboronic acids with sodium arylsulfinate at room temperature in 5 h under the catalyst-free and additive-free conditions. A plausible mechanism has been proposed based on various radical-trapping and CV control experiments.
“…Vinyl sulfone is a privileged structural motif in medicinal chemistry for drug discovery as well as a key structural unit in numerous of biologically active molecules. 1 The vinyl sulfone motif has been used particularly in the design of chemotherapeutics and neuroprotectives, as well as radioprotective agents. 2 Vinyl sulfones also efficiently act as Michael acceptors and 2π partners in cycloaddition reactions in synthetic chemistry.…”
mentioning
confidence: 99%
“…1 The vinyl sulfone motif has been used particularly in the design of chemotherapeutics and neuroprotectives, as well as radioprotective agents. 2 Vinyl sulfones also efficiently act as Michael acceptors and 2π partners in cycloaddition reactions in synthetic chemistry. 3 Due to the importance of vinyl sulfones, continuous efforts have been devoted to using alkynes, α,β-unsaturated carboxylic acids, vinyl halides, terminal epoxides, oxime acetates, and tosylhydrazones as substrates.…”
A water-mediated tosylation of alkenes with tosyl cyanide was discovered. Experimental investigations revealed that the reaction was initiated by the in-situ formation of sulfinyl sulfone in the presence of water....
A four‐component reaction of N‐arylpropiolamides, Hantzsch esters, Na2S2O5 and water via a radical cascade cyclization process with the insertion of sulfur dioxide mediated by K2S2O8 is reported. A series of alkylsulfonated spiro[4,5] trienones are prepared up to 86% yield with a good functional group tolerance and substrate applicability. Preliminary mechanism experiments indicate that carbonyl oxygen of spiro[4,5] trienones originated from water.
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