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(E)-2-(2-fluorostyryl)quinoline is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1164468-41-0

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1164468-41-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1164468-41-0 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,1,6,4,4,6 and 8 respectively; the second part has 2 digits, 4 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 1164468-41:
(9*1)+(8*1)+(7*6)+(6*4)+(5*4)+(4*6)+(3*8)+(2*4)+(1*1)=160
160 % 10 = 0
So 1164468-41-0 is a valid CAS Registry Number.

1164468-41-0Downstream Products

1164468-41-0Relevant academic research and scientific papers

Facile synthesis of 2-alkenylazaarenes via dehydrative coupling of 2-methylazaarenes with aldehydes ‘on water’

Fu, Shiheng,Wang, Liang,Dong, Haoxun,Yu, Junqiang,Xu, Lubin,Xiao, Jian

, p. 4533 - 4536 (2016)

A catalyst-free dehydrative coupling of 2-methylazaarenes with aldehydes ‘on water’ has been developed for efficient synthesis of (E)-2-alkenylazaarenes. The challenging addition/dehydration of aliphatic aldehyde was successfully implemented using water as a solvent. A variety of 2-methylazaarenes, aromatic and aliphatic aldehydes were well tolerated.

Deaminative Olefination of Methyl N-Heteroarenes by an Amine Oxidase Inspired Catalyst

Thorve, Pradip Ramdas,Maji, Biplab

supporting information, p. 542 - 547 (2021/01/26)

We explored the bioinspired o-quinone cofactor catalyzed aerobic primary amine dehydrogenation for a cascade olefination reaction with nine different methyl N-heteroarenes, including pyrimidines, pyrazines, pyridines, quinolines, quinoxolines, benzimidazoles, benzoxazoles, benzthiazoles, and triazines. An o-quinone catalyst phd (1,10-phenanthroline-5,6-dione) combined with a Br?nsted acid catalyzed the reaction. N-Heteroaryl stilbenoids were synthesized in high yields and (E)-selectivities under mild conditions using oxygen (1 atm) as the sole oxidant without needing transition-metal salt, ligand, stoichiometric base, or oxidant.

Lanthanum Pentafluorobenzoate-Catalyzed Aerobic Oxidative Olefination of Benzylamines with 2-Methylquinoline through Deamination and C-H Bond Functionalization

Mao, Dan,Zhu, Xiaoyan,Hong, Gang,Wu, Shengying,Wang, Limin

supporting information, p. 2481 - 2484 (2016/10/21)

An efficient direct aerobic oxidative olefination of the methyl groups of 2-methylquinolines with benzylamines in the presence of a rare-earth-metal Lewis acid catalyst to give 2-styrylquinolines was successfully developed. Preliminary mechanistic studies revealed that the oxidative olefination reaction proceeds through a Lewis acid-catalyzed 2-methylquinoline-aldehyde condensation and an amine-aldehyde condensation.

Catalyst-free synthesis of (E)-2-alkenylquinoline derivatives via C(sp3)-H functionalization of 2-methylquinolines

Xu, Lubin,Shao, Zhuzhou,Wang, Liang,Zhao, Huaili,Xiao, Jian

supporting information, p. 6856 - 6860 (2015/01/09)

This Letter described a facile approach to synthesize (E)-2-alkenylquinoline derivatives via C(sp3)-H functionalization of 2-methylquinolines under catalyst-free conditions. A variety of electronically and sterically diverse 2-methyl quinoline and aromatic aldehydes were well tolerated.

Lewis-acid-catalyzed benzylic reactions of 2-methylazaarenes with aldehydes

Mao, Dan,Hong, Gang,Wu, Shengying,Liu, Xin,Yu, Jianjun,Wang, Limin

, p. 3009 - 3019 (2014/05/20)

Lewis-acid-catalyzed benzylic reactions of 2-methylazaarenes with aldehydes have been investigated. Series of azaarene derivatives were afforded by this reaction. 2-(Pyridin-2-yl)ethanols with common substituents were formed through the LiNTf2-promoted aldol reaction for the first time. 2-Alkenylpyridines, exclusively in the form of the E isomers, were synthesized in the presence of LiNTf2 cooperated with H2NTf. In the presence of La(Pfb)3 as catalysis, 2-alkenylquinolines were obtained in high yields through the reactions between 2-methylquinolines and aldehydes under air.

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