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N-((4-methoxyphenyl)ethynyl)-N,4-dimethylbenzenesulfonamide is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1007597-82-1

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1007597-82-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1007597-82-1 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,0,0,7,5,9 and 7 respectively; the second part has 2 digits, 8 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 1007597-82:
(9*1)+(8*0)+(7*0)+(6*7)+(5*5)+(4*9)+(3*7)+(2*8)+(1*2)=151
151 % 10 = 1
So 1007597-82-1 is a valid CAS Registry Number.

1007597-82-1Downstream Products

1007597-82-1Relevant academic research and scientific papers

Transition-Metal-Free One-Step Synthesis of Ynamides

Zeng, Xianzhu,Tu, Yongliang,Zhang, Zhenming,You, Changming,Wu, Jiao,Ye, Zhiying,Zhao, Junfeng

, p. 4458 - 4466 (2019/03/26)

A robust transition-metal-free one-step strategy for the synthesis of ynamides from sulfonamides and (Z)-1,2-dichloroalkenes or alkynyl chlorides is presented. This method is not only effective for internal ynamides but also amenable for terminal ynamides. Various functional groups, even the vinyl moiety, are compatible, and thus, this strategy offers the opportunity for further functionalization.

AgOTf-catalyzed reaction of sulfonyl hydrazones with ynamides led to stereoselective synthesis of α-amino alkenyl-substituted hydrazone derivatives

Cao, Ziping,Yan, Shikun,Zhao, Changyin,Sun, Xuejun,Tian, Laijin,Meng, Xin

, (2019/08/27)

A novel method for the synthesis of α-amino alkenyl-substituted hydrazone derivatives was disclosed through silver-catalyzed reaction of sulfonyl hydrazones with ynamides. The present method features mild conditions, high stereoselectivity and good yields. The proposed mechanism involves silver-mediated generation of a keteniminium ion intermediate to facilitate the stereoselective addition of hydrazones in the presence of K2CO3, while pyrazole ring could not be constructed under the current conditions.

Ring Expansion and 1,2-Migration Cascade of Benzisoxazoles with Ynamides: Experimental and Theoretical Studies

Vanjari, Rajeshwer,Dutta, Shubham,Prabagar,Gandon, Vincent,Sahoo, Akhila K.

supporting information, p. 4828 - 4836 (2019/12/15)

Demonstrated herein is an AuI-catalyzed annulation of sulfonyl-protected ynamides with substituted 1,2-benzisoxazoles for the synthesis of E-benzo[e][1,3]oxazine derivatives. The transformation involves the addition of benzisoxazole to the gold-activated ynamide, ring expansion of the benzisoxazole fragment to provide an α-imino vinylic gold intermediate, and 1,2-migration of the sulfonamide motif to the masked carbene center to deliver the respective ring-expanded benzo[e][1,3]oxazine of predominant E configuration. A trapping experiment justifies the participation of the α-imino masked gold carbene. DFT computations also support the hypothesized mechanism and rationalize the product stereoselectivity.

A Robust One-Step Approach to Ynamides

Tu, Yongliang,Zeng, Xianzhu,Wang, Hui,Zhao, Junfeng

, p. 280 - 283 (2018/01/17)

A robust one-step synthetic strategy for ynamide with cheap and easily available stock chemicals vinyl dichlorides and electron deficient amides as the starting material is described. In the absence of transition-metal catalyst, the reaction proceeds under mild reaction conditions in open air and thus rendering a convenient operation. This strategy is not only suitable for both terminal and internal ynamide synthesis but also amenable for large-scale preparation. Broad substrate scopes with respect to vinyl dichloride as well as electron-deficient amide were observed.

Gold-Catalyzed Intermolecular [4+2] Annulation of 2-Ethynylanilines with Ynamides: An Access to Substituted 2-Aminoquinolines

Zhao, Ximei,Song, Xinlong,Jin, Hongming,Zeng, Zhongyi,Wang, Qian,Rudolph, Matthias,Rominger, Frank,Hashmi, A. Stephen K.

supporting information, p. 2720 - 2726 (2018/07/29)

A gold-catalyzed intermolecular [4+2] annulation of easily accessible 2-ethynylanilines with ynamides offers a highly region-selective, modular, efficient, and atom-economical strategy for the synthesis of substituted 2-aminoquinolines in up to 93% yield. (Figure presented.).

Palladium-Catalyzed Regioselective Hydroarylation of Ynamides with Aryl Iodides: Easy Synthesis of Various Substituted Enamides Containing Stilbene Derivatives

Wakamatsu, Hideaki,Yanagisawa, Rika,Kimura, Sho,Osawa, Nao,Natori, Yoshihiro,Yoshimura, Yuichi

supporting information, p. 2135 - 2138 (2017/09/26)

Palladium-catalyzed hydroarylation of ynamides has been developed. The desired coupling products were obtained in good yields and with high regioselectivities. Various aryl iodides can be used in this reaction, permitting the syntheses of many different k

Borane-catalyzed selective hydrosilylation of internal ynamides leading to β-silyl (Z)-enamides

Kim, Youngchan,Dateer, Ramesh B.,Chang, Sukbok

supporting information, p. 190 - 193 (2017/11/27)

We have developed a borane-catalyzed regioand stereoselective hydrosilylation of internal ynamides for the first time. The scope of ynamide substrates and silane reactants was broad under mild reaction conditions, affording synthetically versatile β-silyl (Z)-enamide products. The observed stereoselectivity was reasoned to be due to the β-silicon effect on a postulated ketene iminium intermediate.

Copper-catalyzed aerobic oxidative amidation of terminal alkynes: Efficient synthesis of ynamides

Hamada, Tetsuya,Ye, Xuan,Stahl, Shannon S.

, p. 833 - 835 (2008/09/21)

A copper-catalyzed method for the preparation of ynamides has been identified that proceeds via aerobic oxidative coupling of terminal alkynes with various nitrogen nucleophiles, including cyclic carbamates, amides and ureas, and N-alkyl-arylsulfonamides and indoles. Copyright

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