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6-bromo-2,4-diphenylquinazoline is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1229609-99-7

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1229609-99-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1229609-99-7 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,2,2,9,6,0 and 9 respectively; the second part has 2 digits, 9 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 1229609-99:
(9*1)+(8*2)+(7*2)+(6*9)+(5*6)+(4*0)+(3*9)+(2*9)+(1*9)=177
177 % 10 = 7
So 1229609-99-7 is a valid CAS Registry Number.

1229609-99-7Downstream Products

1229609-99-7Relevant academic research and scientific papers

TMSOTf-catalyzed synthesis of substituted quinazolines using hexamethyldisilazane as a nitrogen source under neat and microwave irradiation conditions

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

, p. 7201 - 7212 (2020/10/02)

In this article, we report an efficient and mild synthetic route for the construction of substituted quinazolines from functionalized 2-aminobenzophenones with various benzaldehydes usingcat. TMSOTf and hexamethyldisilazane (HMDS) under neat, metal-free and microwave irradiation conditions in which gaseous ammonia was formedin situ. This synthetic protocol provided the desired quinazolines with a broad substrate scope in good to excellent yields. Some structures were confirmed by X-ray single-crystal diffraction analysis.

Silver(II) oxide-mediated synthesis of 2,4-diarylquinazolines

Cheung, Wing,Patch, Raymond J.,Player, Mark R.

supporting information, p. 2368 - 2371 (2018/05/25)

A single-pot procedure for the synthesis of 2,4-diarylquinazolines is described which involves a silver oxide-mediated C–H activation/C–N bond formation process. The generality of this method with respect to substituent effects is presented along with studies leading to process optimization. Mechanistic investigations provide support for the involvement of radical intermediates in the reaction process.

Triarylamine derivative and organic light-emitting device thereof

-

Paragraph 0067-0069; 0097-0099, (2019/01/08)

The invention provides a triarylamine derivative and an organic light-emitting device thereof, and relates to the technical field of organic photoelectric materials. The triarylamine derivative has abipolar structure, so the triarylamine derivative has a

Four-component quinazoline synthesis from simple anilines, aromatic aldehydes and ammonium iodide under metal-free conditions

Chen, Jinjin,Chang, Dan,Xiao, Fuhong,Deng, Guo-Jun

supporting information, p. 5459 - 5463 (2019/01/03)

A four-component procedure for the preparation of substituted quinazolines from anilines, aromatic aldehydes and ammonium iodide is described. The C-H bond ortho to the amino group in anilines was directly functionalized under metal-free conditions. Two a

Palladium-Catalyzed Three-Component Tandem Process: One-Pot Assembly of Quinazolines

Hu, Kun,Zhen, Qianqian,Gong, Julin,Cheng, Tianxing,Qi, Linjun,Shao, Yinlin,Chen, Jiuxi

supporting information, p. 3083 - 3087 (2018/05/28)

The first example of the palladium-catalyzed, three-component tandem reaction of 2-aminobenzonitriles, aldehydes, and arylboronic acids has been developed, providing a new approach for one-pot assembly of diverse quinazolines in moderate to good yields. A noteworthy feature of this method is the tolerance of bromo and iodo groups, which affords versatility for further synthetic manipulations. Preliminary mechanistic experiments indicate that this tandem process involves two possible mechanistic pathways for the formation of quinazolines via catalytic carbopalladation of the cyano group.

Pd-Catalyzed tandem reaction of N-(2-cyanoaryl)benzamides with arylboronic acids: synthesis of quinazolines

Zhu, Jianghe,Shao, Yinlin,Hu, Kun,Qi, Linjun,Cheng, Tianxing,Chen, Jiuxi

, p. 8596 - 8603 (2018/11/27)

The synthesis of 2,4-disubstituted quinazolines by a palladium-catalyzed reaction of arylboronic acids with N-(2-cyanoaryl)benzamides has been developed with moderate to excellent yields. The method shows good functional group tolerance. In particular, ha

Transition Metal-Free Visible Light-Driven Photoredox Oxidative Annulation of Arylamidines

Shen, Zi-Chao,Yang, Pan,Tang, Yu

, p. 309 - 317 (2016/01/15)

A fast catalytic synthesis of multisubstituted quinazolines from readily available amidines via visible light-mediated oxidative C(sp3)-C(sp2) bond formation has been established. This reaction is a metal-free oxidative coupling catalyzed by a photoredox organocatalyst. The protocol features low catalyst loading (1 mol %).

Synthesis of Quinazolines from N,N′-Disubstituted Amidines via I2/KI-Mediated Oxidative C-C Bond Formation

Lv, Zhigang,Wang, Bingnan,Hu, Zhiyuan,Zhou, Yiming,Yu, Wenquan,Chang, Junbiao

, p. 9924 - 9930 (2016/11/02)

An I2/KI-promoted oxidative C-C bond formation reaction from C(sp3)-H and C(sp2)-H bonds has been used to construct quinazoline skeletons from N,N′-disubstituted amidines. The required substrates are readily prepared from the corresponding acyl chlorides, anilines, and alkyl/benzylamines by sequential amidation, chlorination, and amination reactions. Under the optimal oxidative cyclization conditions, all these amidines were conveniently transformed into the expected products in moderate to good yields. This practical and environmentally benign approach works well with crude amidine intermediates and can also be carried out on a gram scale.

Potassium iodide-catalyzed three-component synthesis of 2-arylquinazolines via amination of benzylic C-H bonds of methylarenes

Zhao, Dan,Shen, Qi,Li, Jian-Xin

supporting information, p. 339 - 344 (2015/03/04)

A novel potassium iodide-catalyzed three-component synthesis of quinazolines via benzylic C-H bonds amination was developed. Commonly used ammonia salt and the sp3 carbon in commercially available methylarenes were used as nitrogen and C1 sources, respectively. Mechanistic studies indicated that an aryl aldehyde is involved as a key intermediate in the reaction.

An electroluminescent compound and an electroluminescent device comprising the same

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Paragraph 0336-0342; 0730-0736, (2020/12/25)

The present invention relates to organic light emitting compounds represented by chemical formula 1-1 to chemical formula 1-2. An organic electroluminescent device using the same has excellent light emitting efficiency and can be driven at low voltage, thereby having improved power efficiency and long life characteristics.COPYRIGHT KIPO 2015

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