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3-(3-methylphenyl)quinoline is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

57479-10-4

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57479-10-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 57479-10-4 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 5,7,4,7 and 9 respectively; the second part has 2 digits, 1 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 57479-10:
(7*5)+(6*7)+(5*4)+(4*7)+(3*9)+(2*1)+(1*0)=154
154 % 10 = 4
So 57479-10-4 is a valid CAS Registry Number.

57479-10-4Downstream Products

57479-10-4Relevant academic research and scientific papers

Copper-Catalyzed Ring-Opening/Reconstruction of Anthranils with Oxo-Compounds: Synthesis of Quinoline Derivatives

Zou, Liang-Hua,Zhu, Hao,Zhu, Shuai,Shi, Kai,Yan, Cheng,Li, Ping-Gui

, p. 12301 - 12313 (2019)

A copper-catalyzed protocol for the construction of various 2-aryl(alkyl)-3-acylquinolines or 3-arylquinolines using readily available anthranils and 1,3-diketones or aldehydes as starting materials is reported herein. Dioxygen as the sole oxidant and hexafluoroisopropanol as the solvent play an important role in both procedures. This ring-opening/reconstruction strategy involving N-O bond cleavage and C-N/C-C bond formation features high yields and broad substrate scope.

[3+1+1+1] Annulation to the Pyridine Structure in Quinoline Molecules Based on DMSO as a Nonadjacent Dual-Methine Synthon: Simple Synthesis of 3-Arylquinolines from Arylaldehydes, Arylamines, and DMSO

Guo, Can-Cheng,Li, Hui,Liu, Qiang,Luo, Wei-Ping,Nie, Zhiwen,Su, Miao-Dong,Yang, Tonglin

, (2022/02/10)

A [3+1+1+1] annulation of arylamines, arylaldehydes, and dimethyl sulfoxide (DMSO) to the pyridine structure in quinolines using DMSO as a nonadjacent dual-methine (═CH?) synthon is disclosed. In this annulation, arylamines provide two carbon atoms and one nitrogen atom, arylaldehydes furnish one carbon atom, and DMSO provides two nonadjacent methines (═CH?) to the pyridine ring in quinoline molecules. This annulation provides a simple approach for the synthesis of 3-arylquinolines from readily available substrates in useful yields. On the basis of the control experiments and the literature, a plausible mechanism is proposed.

Method for preparing 3 - arylquinoline

-

Paragraph 0047; 0048; 0051; 0053; 0054; 0091-0093, (2021/11/26)

The invention discloses a method for preparing 3 - arylquinoline, which is carried out in an oxygen-containing atmosphere, ortho-amine arylmethanol and aryl formaldehyde in DMSO-solution system containing an alkali to obtain 3 -arylquinoline compounds. In 3 - arylquinoline compound structure prepared by the method, 2 carbon atoms are provided by DMSO, aryl groups at 3 carbon atoms and 3 positions are provided by aryl formaldehyde, and all other atoms in the quinoline compound structure are provided by raw material o-amido aryl methanol. The method for synthesizing 3 - arylquinoline has the advantages of wide raw material sources, environmental friendliness, low price and simple operation, and is beneficial to industrial production.

Lewis acid catalyzed reactivity switch: Pseudo three-component annulation of nitrosoarenes and (epoxy)styrenes

Purkait, Anisha,Saha, Subhajit,Ghosh, Santanu,Jana, Chandan K.

supporting information, p. 15032 - 15035 (2020/12/22)

A Lewis acid catalyzed annulation reaction via arene functionalization of nitrosoarenes and C-C cleavage of (epoxy)styrene to provide arylquinolines is reported. The Lewis acid catalyst altered the annulation pattern providing arylquinolines instead of oxazolidines. The reaction with styrene resulted in a mixture of 2,4-diarylquinoline and 4-Arylquinoline, while only 3-Arylquinoline was formed from the reaction of epoxystyrene. This journal is

Direct synthesis of 3-arylquinolines by a nano Pd-catalyzed regioselective C3-H arylation of quinolines

Paul, Abhijit,Paul, Aditya,Yadav, Somnath

supporting information, (2019/11/28)

3-Arylquinolines are biologically and medicinally very important compounds. Direct and regioselective C3-H arylation offers a straight forward methodology for their synthesis. In this work, we report their synthesis by a Pd nanoparticle catalyzed reaction

Method for synthesizing quinoline derivatives

-

Paragraph 0103-0107, (2019/10/01)

The invention discloses a method for synthesizing quinoline derivatives. 2,1-benzisoxazole derivatives represented by formula I and phenylacetaldehyde derivatives represented by formula II are used as raw materials, and are reacted to obtain the quinoline

Cobalt(III)-Catalyzed, DMSO-Involved, and TFA-Controlled Regioselective C?H Functionalization of Anilines with Alkynes for Specific Assembly of 3-Arylquinolines

Zhang, Peiquan,Yang, Yurong,Chen, Zhiyong,Xu, Zhang,Xu, Xuefeng,Zhou, Zhi,Yu, Xiyong,Yi, Wei

supporting information, p. 3002 - 3007 (2019/04/30)

Herein, a novel cobalt(III)-catalyzed and TFA-controlled [3+2+1] cyclization of diverse anilines and terminal alkynes has been realized by using DMSO as both the solvent and the C1 source, which led to the specific synthesis of privileged 3-arylquinolines in one pot and regioselectively. Mechanistic investigations revealed that this versatile transformation might be initiated with a C?H activation process and with a 2-vinylbenzenamine species as the active intermediate. (Figure presented.).

Regioselective Synthesis of C-3-Functionalized Quinolines via Hetero-Diels-Alder Cycloaddition of Azadienes with Terminal Alkynes

Saunthwal, Rakesh K.,Patel, Monika,Verma, Akhilesh K.

, p. 6563 - 6572 (2016/08/16)

A highly efficient metal and protection-free approach for the regioselective synthesis of C-3-functionalized quinolines from azadienes (in situ generated from 2-aminobenzyl alcohol) and terminal alkynes through [4 + 2] cycloaddition has been developed. An unprecedented reaction of 2-aminobenzyl alcohol with 1,3- and 1,4-diethynylbenzene provided the C-3 tolylquinolines via [4 + 2] HDA and oxidative decarboxylation. The -NH2 group directed mechanistic approach was well supported by the control experiments and deuterium-labeling studies and by isolating the azadiene intermediate. The reactivity and selectivity of unprotected azadiene in metal-free base-assisted hetero-Diels-Alder reaction is exploited to quickly assemble an important class of C-3-functionalized quinolines, which are difficult to access.

An improved preparation of mesoporous silica-supported Pd as sustainable catalysts for phosphine-free Suzuki-Miyaura and Heck coupling reactions

Basu, Basudeb,Paul, Susmita

, p. 588 - 594 (2013/10/21)

An improved and eco-friendly procedure has been developed to generate mesoporous silica-supported palladium nanoparticles (SiO2@PdNP) that could be used as a sustainable heterogeneous Pd catalyst for phosphine-free Suzuki-Miyaura and Heck coupling reactions with excellent turnover number and turnover frequency. The presence of Pd on the silica surface was detected by X-ray diffraction and the structural morphology of SiO2@PdNP was obtained by transmission electron microscopy. The heterogeneous catalytic system is recyclable and leaching of the metal after the reaction is not apparently observed. Copyright

Heteroatom-guided, palladium-catalyzed regioselective C-H functionalization in the synthesis of 3-arylquinolines

Tiwari, Virendra Kumar,Pawar, Govind Goroba,Das, Riki,Adhikary, Amit,Kapur, Manmohan

supporting information, p. 3310 - 3313 (2013/07/26)

A new approach for the regioselective functionalization of the C-3-position of quinolines is described. The method utilizes heteroatom guided regioselective C-3 palladation followed by arylation via transmetalation with aryl boronic acids to yield 3-aryl-N-acyl-1,2-dihydroquinolines. In a one-pot sequence, N-deacylation followed by aromatization leads to important 3-arylquinolines in good yields.

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