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N-[3-(thiophen-2-yl)prop-2-yn-1-yl]-4-methylbenzenesulfonamide is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1428675-78-8

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1428675-78-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1428675-78-8 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,4,2,8,6,7 and 5 respectively; the second part has 2 digits, 7 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 1428675-78:
(9*1)+(8*4)+(7*2)+(6*8)+(5*6)+(4*7)+(3*5)+(2*7)+(1*8)=198
198 % 10 = 8
So 1428675-78-8 is a valid CAS Registry Number.

1428675-78-8Relevant academic research and scientific papers

Nickel-catalyzed asymmetric arylative cyclization of N-alkynones: Efficient access to 1,2,3,6-tetrahydropyridines with a tertiary alcohol

Tian, Jiangyan,Li, Wendian,Li, Ruihao,He, Lin,Lv, Hui

, p. 4038 - 4040 (2021/07/06)

Nickel/(S)-t-Bu-PHOX complex catalyzed asymmetric arylative cyclization of N-alkynones has been achieved, delivering 1,2,3,6-tetrahydropyridines containing a chiral tertiary alcohol in high yields and excellent enantioselectivities, which provides efficient access to chiral tetrahydropyridine and piperidine analogues.

An unconventional sulfur-to-selenium-to-carbon radical transfer: Chemo-and regioselective cyclization of yne-ynamides

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

, p. 1113 - 1118 (2020/03/11)

An uncommon sulfur → selenium → carbon radical transfer process is employed to develop an unprecedented selenyl radical-mediated regioselective cyclization of yne-tethered-ynamides. Density functional theory studies and HRMS experiments are used to establish a reactivity scale between thiyl and selenyl radicals. The unique features of this transformation include, (1) the chemoselective reactivity of RSe over RS, (2) regioselective RSe attack on alkyne over ynamide, (3) 5-exo-dig cyclization of yne-ynamide to unusual 4-selenyl-pyrroles, and (4) the green synthetic method. The reaction of methyldiselenide with yne-ynamides to methylselenopyrroles is also described.

Gold-Catalyzed Annulations of N-Propargyl Ynamides with Anthranils with Two Distinct Chemoselectivities

Hsu, Yu-Chen,Hsieh, Shu-An,Liu, Rai-Shung

, p. 5288 - 5297 (2019/03/26)

Gold-catalyzed annulation of N-propargyl ynamides with anthranils can proceed by two distinct mechanisms. In the case of a terminal N-propargyl ynamide, its resulting α-imino gold carbene reacts with a tethered alkyne to generate a vinyl cation to enable hydrolysis, which ultimately yields a pyrrolo[2,3-b]quinoline derivative after treatment with p-toluenesulfonic acid. For an internal alkyne, its α-imino gold carbene reacts with a tethered alkyne via either a vinyl cation or an alkenylgold carbene; both paths ultimately lead to a 4-ketone-2-aminopyrrole derivative. Our mechanistic analysis indicates that water is a better nucleophile than anthranil for terminal ynamides, whereas water and anthranils are equally reactive for internal ynamides.

Umpolung Reactivity of Ynamides: An Unconventional [1,3]-Sulfonyl and [1,5]-Sulfinyl Migration Cascade

Prabagar,Mallick, Rajendra K.,Prasad, Rangu,Gandon, Vincent,Sahoo, Akhila K.

supporting information, p. 2365 - 2370 (2019/01/29)

A regioselective sulfonyl/sulfinyl migration cycloisomerization cascade of alkyne-tethered ynamides is developed in the presence of XPhosgold catalyst. This reaction is the first example of a general [1,3]-sulfonyl migration from the nitrogen center to the β-carbon atom of ynamides, followed by umpolung 5-endo-dig cyclization of the ynamide α-carbon atom to the gold-activated alkyne, and final deaurative [1,5]-sulfinylation. This process allows the synthesis of peripherally decorated unconventional 4-sulfinylated pyrroles with broad scope from N-propargyl-tethered ynamides. In contrast, N-homopropargyl-tethered ynamides undergo intramolecular tetradehydro Diels–Alder reaction to provide 2,3-dihydro-benzo[f]indole derivatives. Control experiments and density-functional theory studies were used to study the reaction pathways.

Synthesis of multisubstituted pyrroles by nickel-catalyzed arylative cyclizations of: N -tosyl alkynamides

Gillbard, Simone M.,Chung, Chieh-Hsu,Karad, Somnath Narayan,Panchal, Heena,Lewis, William,Lam, Hon Wai

supporting information, p. 11769 - 11772 (2018/11/10)

The synthesis of multisubstituted pyrroles by the nickel-catalyzed reaction of N-tosyl alkynamides with arylboronic acids is reported. These reactions are triggered by alkyne arylnickelation, followed by cyclization of the resulting alkenylnickel species

Palladium-catalyzed oxidative 6-exo-trig cyclization of 1,6-enynes: Facile synthesis of bicyclo[4.1.0]heptan-5-ones

Liu, Bang,Song, Ren-Jie,Ouyang, Xuan-Hui,Li, Yang,Hu, Ming,Li, Jin-Heng

, p. 12819 - 12822 (2015/08/06)

We here describe a new palladium-catalyzed oxidative 6-exo-trig cyclization of 1,6-enynes at room temperature using tBuONO as an oxidant for the synthesis of 3-bicyclo[4.1.0]heptan-5-ones. This cascade strategy involves the hydration, cyclization and cycl

Access to cyclobutene-fused azepines through au-catalyzed cycloisomerization of stable alkyne tethered ketene N,N -acetals

Nayak, Sanatan,Ghosh, Nayan,Sahoo, Akhila K.

, p. 2996 - 2999 (2014/06/23)

A base promoted reaction between N-protected propargyl amines and 3-bromopropiolate readily provides an array of novel stable alkyne-tethered ketene N,N-acetals in good yields. A wide range of structurally complex cyclobutene-fused azepine heterocycles are synthesized through the gold-catalyzed intramolecular cycloisomerization of ketene N,N-acetals for the first time. A plausible reaction pathway is deduced on the basis of the 1H NMR studies.

Gold(I)-catalyzed 6-endo-dig hydrative cyclization of an alkyne-tethered ynamide: Access to 1,6-dihydropyridin-2(3H)ones

Ghosh, Nayan,Nayak, Sanatan,Sahoo, Akhila K.

, p. 9428 - 9433 (2013/07/26)

Hydrate your chemistry! Hydrative cyclization of 5-yne-ynamides in the presence of Echavarren's catalyst and p-toluenesulphonic acid (PTSA)×H2O at room temperature affords an array of 1,6-dihydropyridin-2(3H)one derivatives. Isomerization, epoxidation, and hydrogenation of the double bond and insertion of an extended π-conjugate system into the pyridinone skeleton have been successfully accomplished (see scheme; Ts=tosyl). Copyright

Enantioselective synthesis of 5,7-bicyclic ring systems from axially chiral allenes using a Rh(I)-catalyzed cyclocarbonylation reaction

Grillet, Francois,Brummond, Kay M.

, p. 3737 - 3754 (2013/06/04)

A transfer of chirality in an intramolecular Rh(I)-catalyzed allenic Pauson-Khand reaction (APKR) to access tetrahydroazulenones, tetrahydrocyclopenta[c]azepinones and dihydrocyclopenta[c]oxepinones enantioselectively (22-99% ee) is described. The substit

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