1622221-70-8Relevant academic research and scientific papers
Iodine/Manganese Catalyzed Sulfenylation of Indole via Dehydrogenative Oxidative Coupling in Anisole
Li, Weihe,Wang, Hao,Liu, Shengping,Feng, Hua,Benassi, Enrico,Qian, Bo
, p. 2666 - 2671 (2020/05/25)
This protocol describes an iodine/manganese catalytic system for dehydrogenative oxidative coupling reaction of indoles with thiols in anisole. Particularly, the dual roles of anisole have been first demonstrated as a solvent and as a promoter via the formation of an oxonium ion intermediate to accelerate the generation of products. A series of sulfenylindoles are readily constructed under aerobic mild reaction conditions. In addition, the achievement for preparing anticancer and anti-AIDS drugs testifies the practicability of this approach. The mechanism studies disclose probable alternative pathways and a single-electron transfer process are involved in this transformation. (Figure presented.).
Preparation method of indole sulfide compound
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Paragraph 0109-0113, (2019/05/08)
The invention discloses a preparation method of an indole sulfide compound. The preparation method is conducted according to the following steps that a catalyst, an indole reactant, hydrazine hydrate,substituted phenyl sulfonyl chloride and a solvent are
Catalyst-free sulfenylation of indoles with sulfinic esters in ethanol
Yang, Xiuqin,Bao, Yishu,Dai, Zonghao,Zhou, Qingfa,Yang, Fulai
supporting information, p. 3727 - 3731 (2018/08/21)
A novel catalyst-free method for the synthesis of structurally diverse indole thioethers in moderate to excellent yields has been developed. In this reaction, sulfinic esters serve as new sulfur electrophiles.
N-Hydroxy sulfonamides as new sulfenylating agents for the functionalization of aromatic compounds
Wang, Fu-Xiang,Zhou, Shao-Da,Wang, Chengming,Tian, Shi-Kai
supporting information, p. 5284 - 5288 (2017/07/10)
An unprecedented use of N-hydroxy sulfonamides as sulfenylating agents has been established. In the presence of catalytic amounts of iodine and N-hydroxysuccinimide, N-hydroxy sulfonamides participated in sulfenylation with indoles, 7-azaindole, N-methyl pyrrole, and 2-naphthol to afford structurally diverse thioethers in moderate to excellent yields with very high regioselectivity.
Preparation method of 3-indole thioether
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Paragraph 0015, (2016/10/08)
According to the invention, Bunte salt is employed as a sulfur source to prepare 3-indole thioether. At a certain temperature, elementary iodine or hydroiodic acid and salts thereof is employed as a catalyst, dimethyl sulfoxide is employed as an oxidant,
K2S2O8/arenesulfinate: An unprecedented thiolating system enabling selective sulfenylation of indoles under metal-free conditions
Rao, Honghua,Wang, Ping,Wang, Jianchun,Li, Zhongfeng,Sun, Xinzhan,Cao, Shengli
, p. 49165 - 49169 (2014/12/10)
An unprecedented thiolating system K2S2O8/arenesulfinate is described for selective sulfenylation of indoles in CH3CN/H2O. This metal-free strategy enables a simple, efficient and environment-benign approach to the pharmaceutically important candidates, 3-arylthioindoles. Catalytically reactive halogen and aryl groups are well tolerated. This journal is
Copper-catalyzed aerobic oxidative N-S bond functionalization for C-S bond formation: Regio- and stereoselective synthesis of sulfones and thioethers
Li, Xianwei,Xu, Yanli,Wu, Wanqing,Jiang, Chang,Qi, Chaorong,Jiang, Huanfeng
supporting information, p. 7911 - 7915 (2014/07/07)
A regio- and stereoselective synthesis of sulfones and thioethers by means of CuI-catalyzed aerobic oxidative N-S bond cleavage of sulfonyl hydrazides, followed by cross-coupling reactions with alkenes and aromatic compounds to form the C-sp-2-S bond, is described herein. N2 and H2O are the byproducts of this transformation, thus offering an environmentally benign process with a wide range of potential applications in organic synthesis and medicinal chemistry. First cleave, then cross-couple: A direct Cu-catalyzed aerobic oxidative C-sp-2-H functionalization and C-S bond coupling reaction has been developed (see scheme). By slight modification of the additive, sulfonyl hydrazides could serve as sulfonation, sulfenation, or arylation reagents to undergo cross-coupling reactions with alkenes and (hetero)aromatic cycles, affording sulfones, thioethers, and biaryl compounds with high regio- and stereoselectivities (see scheme).
