78526-50-8Relevant articles and documents
Coupling of thiols and aromatic halides promoted by diboron derived super electron donors
Franco, Mario,Vargas, Emily L.,Tortosa, Mariola,Cid
supporting information, p. 11653 - 11656 (2021/11/12)
We have proven that pyridine-boryl complexes can be used as superelectron donors to promote the coupling of thiols and aromatic halides through a SRN1 mechanism. The reaction is efficient for a broad substrate scope, tolerating heterocycles including pyridines, enolizable or reducible functional groups. The method has been applied to intermediates in drug synthesis as well as interesting functionalized polythioethers through a controlled and consecutive intramolecular electron transfer process.
An aryl thioether synthetic method of the compound
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Paragraph 0183; 0184; 0185; 0186, (2017/07/04)
The invention discloses a synthetic method of an aryl sulfide type compound shown by a formula (3). In a reaction solvent, an aryl or alkenyl thiosulfate type derivative and a boric acid, boric acid grease or borate type derivative are used as reaction raw materials and react with each other to obtain a polysubstituted aryl sulfide type compound under the action of a metal copper catalyst. According to the synthetic method disclosed by the invention, reaction conditions are mild, raw materials are easily-available and low in price, the reaction operation is simple, the yield is relatively high, and a key skeleton structure is provided for the synthesis of many natural products and medicaments, so that the method can be widely applicable to industrial scale production. A formula is shown in the specification.
CO2-promoted oxidative cross-coupling reaction for C-S bond formation via masked strategy in an odourless way
Qiao, Zongjun,Ge, Nanyang,Jiang, Xuefeng
supporting information, p. 10295 - 10298 (2015/06/25)
Cu-catalyzed direct oxidative cross-coupling between boronic acids and masked sulfides delivering thioethers was described, in which the SO3-, as a mask, has shown a distinctive effect on the oxidative cross-coupling condition. Disulfide could be suppressed efficiently via masked strategy under CO2 atmosphere. A broad scope of aromatics and scalable processes indicates its practicality, which could be further applied to drug late-stage modification and unsymmetrical dibenzothiophenes (DBTs) synthesis.