ONE-POT AND SIMPLE REACTION FOR THE SYNTHESIS OF ALKYL p-TOLUENESULFINATE ESTERS UNDER SOLID-PHASE CONDITIONS
摘要:
A manipulatively one-pot and rapid method for the synthesis of alkyl p-toluenesulfinate esters 1 from p-toluenesulfinic acid, supported thionyl chloride on silica gel and aliphatic alcohols in solid phase conditions is described.
A method for the electrochemical synthesis of sulfinic esters by aerobicoxidative coupling of thiophenols and alcohols has been developed. Using electrons as the redox reagent and O2 in air as the oxygen source, the reactions proceeded smoothly at room temperature, even for a gram-scale preparation. No use of catalyst, clean redox reagent, green and abundant oxygen source, and mild reaction conditions
Electrochemical synthesis of sulfinic esters from alcohols and thiophenols
作者:Yang He、Jinli Zhang、Liang Xu、Yu Wei
DOI:10.1016/j.tetlet.2020.151631
日期:2020.3
Electrochemical oxidative couplings between S–H and O–H bonds are achieved herein directly from readily-available alcohols and thiophenols, affording a series of diverse sulfinic esters. This strategy can take advantage of 6 equivalents of alcohol, relative to thiophenol, to achieve moderate to good yields, without the assistance of any metallic catalysts, bases, and additional oxidants.
Efficient electrosynthesis of sulfinic esters via oxidative cross‐coupling between alcohols and thiophenols
作者:Fengping Gong、Fangling Lu、Lin Zuo、Qi Wang、Ru Li、Jiaxin Hu、Zhen Li、Abdelilah Takfaoui、Aiwen Lei
DOI:10.1002/jccs.201900246
日期:2020.2
A new protocol for SO bond formation was developed by electrochemical oxidative cross‐coupling between alcohols and thiophenols. With this strategy, a series of valuable sulfinicester derivatives were synthesized up to 96% yield from basic starting materials. A preliminary mechanistic investigation reveals that this reaction involves oxygen reduction reaction (ORR).
develop a simple and convenient method for the Ni/NHC-catalyzed cross-coupling of methyl sulfinates and amines without an acid/base to afford secondary or tertiary sulfinamides in moderate to good yields. The method can provide the desired products with broad substrate scope, good chemoselectivity and good functional group compatibility. The presented approach may enrich the Ni/NHC catalyst system and
deoxygenation of sulfoxides based on a novel application of chlorosulfonium salts and demonstrate a new process using these species generated in situ from sulfoxides as the source of electrophilic chlorine. The use of highly nucleophilic 1,3,5‐trimethoxybenzene (TMB) as the reducing agent is described for the first time and applied in the deoxygenation of simple and functionalized sulfoxides. The method