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1196449-34-9

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1196449-34-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1196449-34-9 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,1,9,6,4,4 and 9 respectively; the second part has 2 digits, 3 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 1196449-34:
(9*1)+(8*1)+(7*9)+(6*6)+(5*4)+(4*4)+(3*9)+(2*3)+(1*4)=189
189 % 10 = 9
So 1196449-34-9 is a valid CAS Registry Number.

1196449-34-9Downstream Products

1196449-34-9Relevant academic research and scientific papers

Phenanthrenequinone-Sensitized Photocatalytic Synthesis of Polysubstituted Quinolines from 2-Vinylarylimines

Talvitie, Juulia,Alanko, Iida,Bulatov, Evgeny,Koivula, Juho,P?ll?nen, Topias,Helaja, Juho

supporting information, p. 274 - 278 (2022/01/04)

Visible-light-excited 9,10-phenanthrenequinone (PQ*) was used as a photocatalyst for the synthesis of polysubstituted quinolines via the electrocyclization of 2-vinylarylimines. Up to quantitative yields of 2,4-disubstituted quinolines were received after 1 h of excitation with blue LEDs at room temperature when MgCO3 was used as an additive in DCM. On the basis of experimental and DFT studies, we propose that PQ? induces one-electron oxidation of the imine substrate that triggers the electrocyclization mechanism.

Carbocatalytic Cascade Synthesis of Polysubstituted Quinolines from Aldehydes and 2-Vinyl Anilines

Bulatov, Evgeny,Helaja, Juho,Hu, Tao,Lenarda, Anna,M?kel?, Mikko K.,Malinen, Kiia,Melchionna, Michele,Nieger, Martin,Talvitie, Juulia,Wirtanen, Tom

supporting information, p. 3775 - 3782 (2021/07/20)

Oxidized active carbon (oAC) catalyses the formation of polysubstituted quinolines from o-vinyl anilines and aldehydes. The reaction proceeds in a cascade manner through condensation, electrocyclization and dehydrogenation, and gives access to a wide range of quinolines with alkyl and/or aryl substituents as demonstrated with 40 examples. The metal-free catalytic procedure allows a heterogeneous protocol for the synthesis of various polysubstituted quinolines. The mechanistic studies imply that both the acid and quinoidic groups in oAC are integral for the catalytic manifold. (Figure presented.).

Synthesis of new quinolizinium-based fluorescent compounds and studies on their applications in photocatalysis

Chan, Wing-Cheung,Deng, Jie-Ren,Ko, Ben Chi-Bun,Tantipanjaporn, Ajcharapan,Wong, Man-Kin,Yip, Wai-Ming,Yu, Qiong

supporting information, p. 8507 - 8515 (2021/10/20)

Quinoliziniums, cationic aromatic heterocycles bearing a quaternary bridgehead nitrogen, have been widely used as fluorescent dyes, DNA intercalators, ionic liquidsetc. A library of new quinolizinium compounds was synthesized from quinolines and internal alkyne substrates in up to 65% isolated yields. Systematic studies of their photophysical properties were conducted. The quinoliziniums have been used in three visible-light-induced photocatalysis reactions with good yields.

Synthesis method of 2, 4-diarylquinoline compound

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Paragraph 0056-0065; 0069-0071, (2020/06/20)

The invention relates to a synthesis method of a 2, 4-diarylquinoline compound (II), which comprises the following steps: mixing a compound represented by a formula (I), an oxidizing agent and an organic solvent, heating to 60-80 DEG C, reacting for 1-2 hours, and carrying out after-treatment on the reaction solution to obtain a product (II). According to the synthesis method, a metal and other additives are not needed, operation is easy, raw materials are easy to obtain, and conditions are mild.

Synthesis of 2,4-Diarylquinoline Derivatives via Chloranil-Promoted Oxidative Annulation and One-Pot Reaction

Cheng, Dongping,Pu, Yueqi,Shen, Jing,Xu, Xiaoliang,Yan, Jizhong,Yan, Xianhang

, p. 1833 - 1840 (2020/06/08)

An oxidative annulation for the synthesis of 2,4-diarylquinolines from o -allylanilines is disclosed that uses recyclable reagent Chloranil as the oxidant. The corresponding products are obtained in moderate to excellent yields. Furthermore, a one-pot access to 2,4-di aryl quinolines from easily available anilines and 1,3-diarylpropenes is described as a highly atom-efficient protocol that involves oxidative coupling, rearrangement, and oxidative annulation.

Mn(III)-Mediated Regioselective 6-endo-trig Radical Cyclization of o-Vinylaryl Isocyanides to Access 2-Functionalized Quinolines

Liu, Yan,Li, Shi-Jun,Chen, Xiao-Lan,Fan, Lu-Lu,Li, Xiao-Yun,Zhu, Shan-Shan,Qu, Ling-Bo,Yu, Bing

, p. 688 - 694 (2020/01/02)

A Mn(III)-mediated radical cyclization reaction of o-vinylaryl isocyanides and arylboronic acids or diphenylphosphine oxides to access various 2-functionalized quinolines under mild conditions was developed. With the introduction of radical stabilizing substituents (e. g. aryl and methyl group) on vinyl group, this reaction provides a regiospecific 6-endo-trig radical cyclization of o-vinylaryl isocyanides, giving a number of structurally unique and biologically potential 2-functionalized quinoline derivatives.

Quinoline compound and synthesis method thereof

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Paragraph 0120-0125, (2020/02/14)

The invention discloses a synthesis method of a quinoline compound. The synthesis method comprises the following steps: adding a diazocarbonyl compound and a 2-vinylaniline compound into a solvent, carrying out a reaction under the protection of an inert

MOF-5 as a highly efficient and recyclable catalyst for one pot synthesis of 2,4-disubstituted quinoline derivatives

Di, Jia-Qi,Ma, Cui-Ting,Xiao, Song-Tao,Zhang, Zhan-Hui

, p. 8614 - 8620 (2020/06/09)

A MOF-5-catalyzed three-component coupling reaction was developed as an efficient approach for the synthesis of 2,4-disubstituted quinoline derivatives via a one pot three-component reaction of aromatic amines, aldehydes and alkynes with excellent yields. The easy recovery and reusability of the catalyst, broad substrate scope, short reaction time, high yields of products and solvent-free conditions make this protocol practical, environmentally friendly and economically attractive.

Manganese(ii)-catalysed dehydrogenative annulation involving C-C bond formation: highly regioselective synthesis of quinolines

Wang, Chengniu,Yang, Jinfei,Meng, Xiao,Sun, Yufeng,Man, Xuyan,Li, Jinxia,Sun, Fei

supporting information, p. 4474 - 4478 (2019/04/05)

An inexpensive nontoxic manganese(ii)-catalysed dehydrogenative annulation was developed for C-C bond formation. The reaction showed high selectivity and efficiency across a broad substrate scope. Remarkably simple conditions and the ability to conduct gram-scale synthesis underscore this method's utility. To demonstrate the potential of this approach, we tested the drug effects of compound 3n, which showed activity for blocking vascular development. The results of this study will be important for the treatment of eye diseases and tumors caused by vascular proliferation.

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