作者:Yiming Li、Tao Mou、Lingling Lu、Xuefeng Jiang
DOI:10.1039/c9cc07655g
日期:——
In nature, halogenation promotes the biological activity of secondary metabolites, especially geminal dihalogenation. Related natural molecules have been studied for decades. In recent years, their diversified vital activities have been explored for treating various diseases, which call for efficient and divergent synthetic strategies to facilitate drug discovery. Here we report a catalyst-free oxidative
在自然界中,卤化促进次生代谢产物的生物活性,特别是双生双卤化。相关的天然分子已经研究了数十年。近年来,已经探索了其多样化的重要活动来治疗各种疾病,这要求有效且多样化的合成策略以促进药物发现。在这里,我们报告了在环境条件下(卤离子,空气,水,可见光,室温和常压下)实现的无催化剂氧化卤化。从结构上讲,氧和卤离子之间的电子转移通过简单的共轭分子,其中苯乙炔既是反应物又是催化剂。综合而言,它提供了高度兼容的后期转化策略来构建二卤代乙酰苯(DHAP)。