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ethyl 6-chloro-2,4-diphenylquinoline-3-carboxylate is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

121659-89-0

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121659-89-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 121659-89-0 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,2,1,6,5 and 9 respectively; the second part has 2 digits, 8 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 121659-89:
(8*1)+(7*2)+(6*1)+(5*6)+(4*5)+(3*9)+(2*8)+(1*9)=130
130 % 10 = 0
So 121659-89-0 is a valid CAS Registry Number.

121659-89-0Downstream Products

121659-89-0Relevant academic research and scientific papers

Environmentally Friendly Nafion-Mediated Friedl?nder Quinoline Synthesis under Microwave Irradiation: Application to One-Pot Synthesis of Substituted Quinolinyl Chalcones

Chan, Chieh-Kai,Lai, Chien-Yu,Wang, Cheng-Chung

, p. 1779 - 1794 (2020/06/08)

An efficient and eco-friendly synthetic route for Friedl?nder quinoline synthesis of polysubstituted quinolines is described. This green chemical method starts from various 2-aminobenzophenones and mono- or dicarbonyl synthons and uses reusable Nafion NR50 material as a solid catalyst in ethanol under microwave irradiation. The protocol has a high generality of functional groups and provides the desired quinolines in good to excellent yields. Some structures were confirmed by single-crystal X-ray diffraction analysis.

An efficient heterogeneous gold(I)-catalyzed intermolecular cycloaddition of 2-aminoaryl carbonyls and internal alkynes leading to polyfunctionalized quinolines

Hu, Wenli,Yang, Weisen,Yan, Tao,Cai, Mingzhong

supporting information, p. 799 - 813 (2019/03/23)

The first heterogeneous intermolecular cycloaddition of 2-aminoaryl carbonyls and internal alkynes was realized in DMF at 100 °C by using a triphenylphosphine-functionalized MCM-41-supported gold(I) complex [MCM-41-PPh3-AuCl] and AgOTf as catal

Regioselective intramolecular annulations of ambident β-enamino esters: A diversity-oriented synthesis of nitrogen-containing privileged molecules

Yaragorla, Srinivasarao,Pareek, Abhishek

supporting information, p. 909 - 913 (2018/02/12)

Diversity-oriented, regioselective, intramolecular annulation of β-enamino esters is described under solvent-free, calcium-catalysis. 2-aminoaryl ketones and alkyl propiolates undergone a [4+2] annulation to yield substituted quinolines; with an excess of

Synthesis of polysubstituted quinolines via copper(ii)-catalyzed annulation of 2-aminoaryl ketones with alkynoates

Bagdi, Avik Kumar,Santra, Sougata,Rahman, Matiur,Majee, Adinath,Hajra, Alakananda

, p. 24034 - 24037 (2013/11/19)

Copper triflate catalyzed annulation of 2-aminoaryl ketones with internal alkynes has been developed for the synthesis of polysubstituted quinolines in high yields under solvent-free conditions. Phenyl propiolic acid afforded the 3-unsubstituted quinoline

Access to quinolines through gold-catalyzed intermolecular cycloaddition of 2-aminoaryl carbonyls and internal alkynes

Cai, Shuting,Zeng, Jing,Bai, Yaguang,Liu, Xue-Wei

experimental part, p. 801 - 807 (2012/02/16)

A facile and general method leading to polyfunctionalized quinolines was developed. In the presence of a highly efficient combination encompassing (PPh)3AuCl and AgOTf, the reactions between 2-aminocarbonyls and an array of internal alkynes pro

InCl3-driven regioselective synthesis of functionalized/ annulated quinolines: Scope and limitations

Chanda, Tanmoy,Verma, Rajiv Kumar,Singh, Maya Shankar

supporting information; experimental part, p. 778 - 787 (2012/06/29)

The efficient, regioselective synthesis of functionalized/annulated quinolines was achieved by the coupling of 2-aminoaryl ketones with alkynes/active methylenes/α-oxoketene dithioacetals promoted by InCl 3 in refluxing acetonitrile as well as under solvent-free conditions in excellent yields. This transformation presumably proceeded through the hydroamination-hydroarylation of alkynes, and the Friedlaender annulation of active methylene compounds and α-oxoketene dithioacetals with 2-aminoarylketones. In addition, simple reductive and oxidative cyclization of 2-nitrobenzaldehyde and 2-aminobenzylalcohol, respectively, afforded substituted quinolines. Systematic optimization of the reaction parameters allowed us to identify two-component coupling (2CC) conditions that were tolerant of a wide range of functional groups, thereby providing densely functionalized/annulated quinolines. This approach tolerates the synthesis of various bioactive quinoline frameworks from the same 2-aminoarylketones under mild conditions, thus making this strategy highly useful in diversity-oriented synthesis (DOS). The scope and limitations of the alkyne-, activated methylene-, and α-oxoketene dithioacetal components on the reaction were also investigated.

Green approach for the efficient synthesis of quinolines promoted by citric acid

Enugala, Ramu,Nuvvula, Sreelatha,Kotra, Vijay,Varala, Ravi,Adapa, Srinivas R.

experimental part, p. 2523 - 2533 (2011/04/17)

Citric acid promoted Friedlander synthesis of a mini-library of poly substituted quinolines (30 examples) at 100 °C under solvent-free conditions was achieved in moderate to excellent yields (54-99%). The method is simple, cost-effective and environmental

Cascade synthesis of 3-quinolinecarboxylic ester via benzylation/ propargylation-cyclization

Fan, Jinmin,Wan, Changfeng,Sun, Gaojun,Wang, Zhiyong

supporting information; experimental part, p. 8608 - 8611 (2009/04/04)

(Chemical Equation Presented) Reactions of 2-amino-aryl alcohols with β-ketoesters catalyzed by a catalytic amout of FeCl3 via tandem benzylation-cyclization produce the corresponding 3-quinolinecarboxylic esters in good to high yields. Extending this methodology to propargylation- cyclization, 2-nitrophenyl propargyl alcohols with β-ketoesters catalyzed by FeCl3 and SnCl2 also produce the 4-alkyne-3- quinolinecarboxylic esters. The mechanistic details of this benzylation/ propargylation and cyclization cascade process are also discussed.

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