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3-(4-chlorophenyl)quinazolin-4-one is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

24122-31-4

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24122-31-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 24122-31-4 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,4,1,2 and 2 respectively; the second part has 2 digits, 3 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 24122-31:
(7*2)+(6*4)+(5*1)+(4*2)+(3*2)+(2*3)+(1*1)=64
64 % 10 = 4
So 24122-31-4 is a valid CAS Registry Number.
InChI:InChI=1/C14H9ClN2O/c15-10-5-7-11(8-6-10)17-9-16-13-4-2-1-3-12(13)14(17)18/h1-9H

24122-31-4SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 18, 2017

Revision Date: Aug 18, 2017

1.Identification

1.1 GHS Product identifier

Product name 3-(4-chlorophenyl)quinazolin-4-one

1.2 Other means of identification

Product number -
Other names HMS2786C15

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:24122-31-4 SDS

24122-31-4Relevant academic research and scientific papers

Copper-Catalyzed Oxidative Cyclization of 2-Aminobenzamide Derivatives: Efficient Syntheses of Quinazolinones and Indazolones

Govindan, Karthick,Duraisamy, Tamilselvan,Jayaram, Alageswaran,Senadi, Gopal Chandru,Lin, Wei-Yu

supporting information, p. 1115 - 1124 (2021/12/02)

A simple copper-catalyzed assembly to formulate quinazolinone and indazolone derivatives in a single protocol manner is reported. These transformations are based on the fact that DMF can serve as a reaction solvent and one carbon synthon for the construct

New and efficient synthesis of 3-arylquinazolin-4(1H)-ones and biologically important N-fused tetracycles based on N-(2-carboxyphenyl)oxalamide

Mamedov, Vakhid A.,Mamedova, Vera L.,Syakaev, Victor V.,Gubaidullin, Aidar T.,Voronina, Julia K.,Kushatov, Temur A.,Korshin, Dmitry E.,Samigullina, Aida I.,Tanysheva, Ekaterina G.,Kh. Rizvanov, Il'dar,Latypov, Shamil K.

, (2021/09/28)

A novel clean, one-pot syntheses of 3-arylquinazolin-4(3H)-ones and quinoxalino[2,1-b]quinazoline-6,12(5H)-diones via PPA-mediated coupling of N-(2-carboxyphenyl)oxalamides with arylamines and 1,2-benzenediamines have been developed. Under mild reaction conditions with use of Na2S2O4 the benzimidazo[2,1-b]quinazolin-12-ones were achieved in good yield from 3-(2-nitrophenyl)quinazolin-4-ones.

Metal-free C-H methylation and acetylation of heteroarenes with PEG-400

Kudale, Vishal Suresh,Wang, Jeh-Jeng

supporting information, p. 3506 - 3511 (2020/06/25)

The generation of a methyl carbon source from renewable and cheap sources is challenging. Herein, we describe a novel and an efficient route for methylation and acetylation of aza-heteroarenes using PEG-400 under O2and TsOH·H2O for the first time by tuning the reaction conditions using a different set of starting materials. The key features of the current protocol are oxidative C-O and C-C bond scission under metal-free conditions with good functional group tolerance, and a broad substrate scope. The potential applicability of the designed methodology was demonstrated for the synthesis of central nervous system (CNS) depressant and anticonvulsant drug molecules by a one-pot strategy.

Transition-metal and oxidant-free approach for the synthesis of diverse N-heterocycles by TMSCl activation of isocyanides

Chen, Fen-Er,Dong, Lin,Li, Hongyan,Liu, Jinxin,Luo, Liangliang,Xiao, You-Cai,Zhou, Yuan

, p. 29257 - 29262 (2020/10/02)

A highly efficient TMSCl-mediated addition of N-nucleophiles to isocyanides has been achieved. This transition-metal and oxidant-free strategy has been applied to the construction of various N-heterocyles such as quinazolinone, benzimidazole and benzothiazole derivatives by the use of distinct amino-based binucleophiles. The notable feature of this protocol includes its mild reaction condition, broad functional group tolerance and excellent yield. This journal is

Facile access to: N-formyl imide as an N-formylating agent for the direct synthesis of N-formamides, benzimidazoles and quinazolinones

Huang, Hsin-Yi,Liang, Chien-Fu,Lin, Xiu-Yi,Yen, Shih-Yao

supporting information, p. 5726 - 5733 (2020/08/21)

N-Formamide synthesis using N-formyl imide with primary and secondary amines with catalytic amounts of p-toluenesulfonic acid monohydrate (TsOH·H2O) is described. This reaction is performed in water without the use of surfactants. Moreover, N-formyl imide is efficiently synthesized using acylamidines with TsOH·H2O in water. In addition, N-formyl imide was successfully used as a carbonyl source in the synthesis of benzimidazole and quinazolinone derivatives. Notable features of N-formylation of amines by using N-formyl imide include operational simplicity, oxidant- A nd metal-free conditions, structurally diverse products, and easy applicability to gram-scale operation.

Sustainable methine sources for the synthesis of heterocycles under metal- and peroxide-free conditions

Senadi, Gopal Chandru,Kudale, Vishal Suresh,Wang, Jeh-Jeng

, p. 979 - 985 (2019/03/12)

Alcohols and ethers were identified as sustainable methine sources for synthesizing quinazolinone and benzimidazole derivatives using a combination of TsOH·H2O/O2 and appropriate bis-nucleophiles for the first time. Deuterium labeling studies clearly proved that the C2 hydrogen of the synthesized heterocycles came from the methine source. These unique reaction conditions were successfully applied to the synthesis of echinozolinone (2e′), 2f′ (a common precursor of rutaecarpine and (±) evodiamine), and dimedazole (6d). Notable features of this method include its low toxicity, use of commercial feedstocks as substrates, low cost, broad functional group tolerance and suitability for a wide range of bis-nucleophilic starting materials.

New Strategy for the Synthesis of Heterocycles via Copper-Catalyzed Oxidative Decarboxylative Amination of Glyoxylic Acid

Niu, Bin,Li, Shaoqing,Cui, Chang,Yan, Yizhe,Tang, Lin,Wang, Jianyong

supporting information, p. 7800 - 7803 (2019/11/28)

A copper-catalyzed oxidative decarboxylative amination of glyoxylic acid with substrates having two nitrogen-nucleophilic sites was first demonstrated. Using this novel approach, 1,3,5-triazines, quinazolinones and quinazolines were obtained in up to 93 % yields. Notably, glyoxylic acid was employed as the C1 synthon for heterocycles. This strategy enriches the application of glyoxylic acid for the synthesis of valuable heterocycles.

Transition metal-free C-F/C-Cl/C-C cleavage of ClCF2COONa for the synthesis of heterocycles

Yan, Yizhe,Cui, Chang,Wang, Jianyong,Li, Shaoqing,Tang, Lin,Liu, Yanqi

supporting information, p. 8071 - 8074 (2019/09/19)

A transition metal-free and external oxidant-free annulation of substrates having two nitrogen-nucleophilic sites with ClCF2COONa was demonstrated, affording a series of 1,3,5-triazines and quinazolinones in up to 96% yields. Notably, ClCF

Furan-2-carbaldehydes as C1 building blocks for the synthesis of quinazolin-4(3: H)-ones via ligand-free photocatalytic C-C bond cleavage

Yu, Wenjia,Zhang, Xianwei,Qin, Bingjie,Wang, Qiyang,Ren, Xuhong,He, Xinhua

, p. 2449 - 2454 (2018/06/11)

Furan-2-carbaldehydes, as biomass-derived chemicals, are used as efficient green C1 building blocks to synthesize bioactive quinazolin-4(3H)-ones by ligand-free photocatalytic C-C bond cleavage. Notably, protection of hydroxyl, carboxyl, amide, or secondary amino groups is not required. Mechanistic studies suggest that conjugated N,O-tridentate copper complexes act as novel photoinitiators under visible light.

Synthesis of Quinazolinones, Imidazo[1,2-c]quinazolines and Imidazo[4,5-c]quinolines through Tandem Reductive Amination of Aryl Halides and Oxidative Amination of C(sp3)–H Bonds

Nandwana, Nitesh Kumar,Dhiman, Shiv,Saini, Hitesh Kumar,Kumar, Indresh,Kumar, Anil

, p. 514 - 522 (2017/02/05)

A tandem multicomponent approach has been described for the synthesis of quinazolinones, imidazo[1,2-c]quinazolines and imidazo[4,5-c]quinolines. The reaction involves a copper-catalyzed reductive amination through azidation followed by reduction and oxidative amination of C(sp3)–H bonds of N,N-dimethylacetamide in the presence of TBHP (tert-butylhydroperoxide) as oxidant. The method uses the easily available sodium azide as a nitrogen source and DMA (N,N-dimethylacetamide) as a one-carbon source for the synthesis of these N-fused heterocycles in good to excellent yields. The reaction can also be used for gram-scale synthesis.

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