Department of Chemistry, Duke University , Durham, North Carolina 27708, United States.
J Am Chem Soc. 2017 Aug 23;139(33):11622-11628. doi: 10.1021/jacs.7b07661. Epub 2017 Aug 14.
Arene amination is achieved by site-selective C-H zincation followed by copper-catalyzed coupling with O-benzoylhydroxylamines under mild conditions. Key to this success is ortho-zincation mediated by lithium amidodiethylzincate base that is effective for a wide range of arenes, including nonactivated arenes bearing simple functionalities such as fluoride, chloride, ester, amide, ether, nitrile, and trifluoromethyl groups as well as heteroarenes including indole, thiophene, pyridine, and isoquinoline. An analogous C-H azidation is also accomplished using azidoiodinane for direct introduction of a useful azide group onto a broad scope of arenes and heteroarenes. These new transformations offer rapid access to valuable and diverse chemical space of aminoarenes. Their broad applications in organic synthesis and drug discovery are demonstrated in the synthesis of novel analogues of natural product (-)-nicotine and antidepressant sertraline by late-stage amination and azidation reactions.
芳胺化反应是通过选择性的 C-H 锌化反应,然后在温和条件下与邻苯甲酰基羟胺进行铜催化偶联来实现的。成功的关键在于由锂酰胺二乙基锌盐介导的邻位锌化,该方法对各种芳基化合物有效,包括带有氟化物、氯代物、酯、酰胺、醚、腈和三氟甲基等简单官能团的非活化芳基化合物以及吲哚、噻吩、吡啶和异喹啉等杂芳基化合物。类似的 C-H 叠氮化反应也可以使用叠氮碘烷来完成,直接将有用的叠氮基团引入广泛的芳基和杂芳基化合物中。这些新的转化为氨基芳基提供了快速进入有价值和多样化的化学空间的途径。通过晚期的胺化和叠氮化反应,这些新转化在天然产物(-)尼古丁和抗抑郁药舍曲林的新型类似物的合成中展示了其在有机合成和药物发现中的广泛应用。