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2-[(4-methylphenyl)sulfonyl]-1H-indole is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

148317-63-9

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148317-63-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 148317-63-9 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,4,8,3,1 and 7 respectively; the second part has 2 digits, 6 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 148317-63:
(8*1)+(7*4)+(6*8)+(5*3)+(4*1)+(3*7)+(2*6)+(1*3)=139
139 % 10 = 9
So 148317-63-9 is a valid CAS Registry Number.

148317-63-9Relevant academic research and scientific papers

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)

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

Palladium-Catalyzed Direct C-H Functionalization of Indoles with the Insertion of Sulfur Dioxide: Synthesis of 2-Sulfonated Indoles

Liu, Tong,Zhou, Wei,Wu, Jie

, p. 6638 - 6641 (2017)

A palladium-catalyzed direct C-H bond sulfonylation of indoles with the insertion of sulfur dioxide is achieved through a three-component reaction of 1-(pyridin-2-yl)indoles, DABCO·(SO2)2, and aryldiazonium tetrafluoroborates under mild conditions. Diverse 2-sulfonated indoles are generated by using 10 mol % of palladium(II) bromide as the catalyst at room temperature. This synthetic approach is efficient by merging palladium catalysis and insertion of sulfur dioxide via a radical process. 2-Pyrimidinyl can be used as the directing group well as for the C-H bond sulfonylation. Additionally, the directing group can be easily removed.

Multifunctionalization of Indoles: Synthesis of 3-Iodo-2-sulfonyl Indoles

Park, Hyowon,Bae, Junryeol,Son, Soobin,Jang, Hye-Young

supporting information, p. 1128 - 1133 (2019/11/22)

The selective multifunctionalization of indoles by using thiosulfonates, trimethyl sulfoxonium iodide (Me3SOI), and H2O2 was studied. The reaction of thiosulfonates with Me3SOI and H2O2 produced sulfonyl radicals and an iodination reagent, both of which were incorporated in indoles to form 3-iodo-2-sulfonyl indoles under carefully controlled conditions. The related reaction mechanism and the substrate scope of 3-iodo-2-sulfonyl indoles are presented.

The fast and efficient KI/H2O2 mediated 2-sulfonylation of indoles and N-methylpyrrole in water

Zhang, Jun,Wang, Zhong,Chen, Lingjuan,Liu, Yan,Liu, Ping,Dai, Bin

, p. 41651 - 41656 (2019/01/03)

The rapid and efficient KI/H2O2-mediated 2-sulfonylation of substituted indoles and N-methylpyrrole was established. The corresponding 2-sulfonylation products are synthesized from readily available sulfur sources, namely arylsulfonyl hydrazides, 4-methylbenzenesulfinic acid and sodium 4-methylbenzenesulfinate in good to excellent yields in only 5 min. Moreover, the aqueous solution of hydrogen peroxide is used as both oxidant and solvent. Mechanistic studies demonstrated that 2,3-diiodoindoline was the main sulfonylation intermediate.

A Sulfonylation Reaction: Direct Synthesis of 2-Sulfonylindoles from Sulfonyl Hydrazides and Indoles

Rahaman, Rajjakfur,Barman, Pranjit

, p. 684 - 690 (2017/03/21)

A metal-free synthesis of 2-sulfonylindole derivatives has been developed through a novel TBHP/I2-mediated coupling of C3/unsubstituted indoles with sulfonyl hydrazides. The reaction utilizes readily available starting materials under mild reaction conditions, providing an alternative and attractive approach to 2-sulfonylindoles with high yields. The developed synthetic procedure is suitable for both N-protected or unprotected indoles.

Electrooxidative Metal-Free Dehydrogenative α-Sulfonylation of 1H-Indole with Sodium Sulfinates

Feng, Mei-Lin,Xi, Long-Yi,Chen, Shan-Yong,Yu, Xiao-Qi

, p. 2746 - 2750 (2017/05/29)

A method for the electrochemical α-sulfonylation of 1H-indole with arenesulfinates was developed. A variety of indoles underwent this sulfonylation smoothly at room temperature under metal-free and chemical-oxidant-free conditions to afford indolyl aryl sulfones in good to high yields. This reaction was found to tolerate a variety of functional groups, including halides and cyclopropyl, ether, ester, and aldehyde groups. It was applied to the synthesis of biologically active 5-HT6 modulators.

Convenient KI-catalyzed regioselective synthesis of 2-sulfonylindoles using water as solvent

Li, Hongjie,Wang, Xiaolong,Yan, Jie

supporting information, p. 4277 - 4280 (2017/07/11)

A convenient procedure is developed for the preparation of 2-sulfonylindoles from indoles and sodium sulfinates catalyzed by KI in water. This environmentally benign 2-sulfonylation of indoles proceeds efficiently under mild conditions, affording the products with high regioselectivity and in moderate to good yields.

Catalyst-controlled selectivity in C-S bond formation: Highly efficient synthesis of C2- and C3-sulfonylindoles

Yang, Yong,Li, Wanmei,Xia, Chengcai,Ying, Beibei,Shen, Chao,Zhang, Pengfei

, p. 304 - 307 (2016/02/05)

Exploring a potential catalyst system for catalyst-controlled selectivity in C-S bond formation is a fascinating challenge. Herein, we described two novel and highly efficient methods for the selective synthesis of C2- and C3-sulfonylindoles showing good biological activities by employing iodide and copper catalysts, respectively. Mechanistic studies point to the crucial role of the electronic properties of the sulfonylated intermediates. I see two and I see three: Two novel and highly efficient methods for the selective synthesis of C2- and C3-sulfonylindoles by employing iodide and copper catalysts, respectively, are described. Mechanistic studies point to the crucial role of the electronic properties of the sulfonylated intermediates. phen=1,10-phenantroline, TBHP=tert-butyl hydroperoxide.

Iodine-PPh3-mediated C3-sulfenylation of indoles with sodium sulfinates

Katrun, Praewpan,Hongthong, Sakchai,Hlekhlai, Sornsiri,Pohmakotr, Manat,Reutrakul, Vichai,Soorukram, Darunee,Jaipetch, Thaworn,Kuhakarn, Chutima

, p. 18933 - 18938 (2014/05/20)

3-(Alkylsulfanyl)- and 3-(arylsulfanyl)indoles were efficiently prepared by the reaction of indoles with sodium sulfinates mediated by iodine-PPh 3 in ethanol. The salient features of the present protocol are simplicity, high efficiency, non-anhydrous conditions, environmentally friendly reagents and solvent, and short reaction time.

Regioselective C 2 sulfonylation of indoles mediated by molecular iodine

Katrun, Praewpan,Mueangkaew, Charoensak,Pohmakotr, Manat,Reutrakul, Vichai,Jaipetch, Thaworn,Soorukram, Darunee,Kuhakarn, Chutima

, p. 1778 - 1785 (2014/03/21)

A facile and general method for regioselective C2 sulfonylation reaction of indoles mediated by iodine is described. The 2-sulfonylated products were obtained up to 96% yield under mild reaction conditions (room temperature, 2 h).

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