化学
绿色化学
催化作用
芳构化
原子经济
产量(工程)
分子内力
水杨酸
喹唑啉
商品化学品
组合化学
基质(水族馆)
有机化学
硫黄
反应机理
冶金
材料科学
地质学
海洋学
生物化学
作者
Yuki Yamamoto,Chihiro Yamakawa,Riku Nishimura,Chuan Dong,Shintaro Kodama,Akihiro Nomoto,Michio Ueshima,Akira Ogawa
标识
DOI:10.3389/fchem.2021.822841
摘要
Conventional quinazoline synthesis methods involve a highly multistep reaction, and often require excess amounts of substrate to control the product selectivity, leading to significant resource wastage. Hence, in this study, from the viewpoint of green chemistry, we developed a novel metal-free synthetic method for 2-substituted quinazoline derivatives by the 4,6-dihydroxysalicylic acid-catalyzed oxidative condensation of o-aminobenzylamines and benzylamines using atmospheric oxygen. In this system, the use of a catalytic amount of BF3‧Et2O (10 mol%) as a Lewis acid successfully led to the efficient oxidative condensation and intramolecular cyclization of these amines, followed by aromatization to afford the corresponding 2-arylquinazolines in up to 81% yield with excellent atom economy and environmental factor. Furthermore, to expand this green oxidation method to gram-scale synthesis, we investigated the development of an oxidation process using salicylic acid itself as an organocatalyst, and established a method for the practical green synthesis of a series of nitrogen-containing heterocycles. We expect that the findings will contribute to the development of practical synthesis methods for pharmaceutical manufacturing and industrial applications, along with further advancements in green chemistry.
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