952737-55-2Relevant academic research and scientific papers
Catalyst-free synthesis of quinazolinones by oxidative cyclization under visible light in the absence of additives
Yang, Jiangnan,Xie, Zongbo,Chen, Zhongsheng,Jin, Liang,Li, Qian,Le, Zhanggao
, p. 1496 - 1501 (2021)
A general metal-free oxidative cyclization route was developed to synthesize quinazolinones under visible light. A series of substituted 2-aminobenzamides were reacted with aldehydes or ketones to produce the desired quinazolinones in good yields. Most importantly, the reaction did not require excess oxidant or high temperatures.
The Rh(iii)-catalysed C-H/N-H annulation of 2-thienyl- And 2-phenyl-quinazolin-4(3: H)-ones with diphenylacetylene
Moshkina, Tatyana N.,Nosova, Emiliya V.,Lipunova, Galina N.,Zhilina, Ekaterina F.,Slepukhin, Pavel A.,Nikonov, Igor L.,Charushin, Valery N.
, p. 8456 - 8466 (2021/05/26)
A series of 4,5-diphenyl-7H-thieno[2′,3′:3,4]pyrido[2,1-b]quinazolin-7-ones was synthesized via the Rh(iii)-catalyzed annulation of 2-thienylquinazolin-4(3H)-ones with diphenylacetylene. 2-Phenylquinazolin-4(3H)-one amide alcoholysis and double C-H functionalization proceeded under the same reaction conditions with the formation of 2,3,7,8-tetraphenyl-1H-benzo[d,e][1,8]-naphthyridine derivatives. All compounds possess fluorescence properties in MeCN and toluene solutions as well as in the solid state. The aggregation induced emission (AIE) properties and the ability to detect Fe3+ cations were evaluated.
Method for synthesizing quinazolinone compound through visible light induction
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Paragraph 0083-0088, (2021/11/27)
The method is mild in reaction condition, simple and convenient in post-treatment operation, free of additional additives, high I in reaction efficiency, wide II in substrate adaptability, high in product purity, green and environment-friendly, and the method has III the advantages of mild reaction conditions, no need of additional additives, high reaction efficiency, wide substrate adaptability.
Oxidative synthesis of quinazolinones and benzothiadiazine 1,1-dioxides from 2-aminobenzamide and 2-aminobenzenesulfonamide with benzyl alcohols and aldehydes
Sharif, Muhammad,Opalach, Julita,Langer, Peter,Beller, Matthias,Wu, Xiao-Feng
, p. 8 - 17 (2014/01/06)
An interesting procedure for the zinc-catalyzed oxidative transformation of ready available 2-aminobenzamide, 2-aminobenzenesulfonamide with benzyl alcohols has been developed. Various quinazolinones and benzothiadiazine 1,1-dioxides were prepared in moderate to good yields under identical conditions. The reactions of both aromatic aldehydes and aliphatic aldehydes with 2-aminobenzamide under catalyst free conditions were described as well. In water media, the products were formed in good yields.
Therapeutic reactivation of mutant p53 protein by quinazoline derivatives
Sutherland, Hamish S.,Hwang, In Young,Marshall, Elaine S.,Lindsay, Brent S.,Denny, William A.,Gilchrist, Catherine,Joseph, Wayne R.,Greenhalgh, Debra,Richardson, Emma,Kestell, Philip,Ding, Angela,Baguley, Bruce C.
, p. 2035 - 2045 (2013/01/15)
Summary: Purpose The human tumour suppressor protein p53 is mutated in nearly half of human tumours and most mutant proteins have single amino acid changes. Several drugs including the quinazoline derivative 1 (CP-31398) have been reported to restore p53
