Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.
J Am Chem Soc. 2013 Sep 4;135(35):13107-12. doi: 10.1021/ja4060806. Epub 2013 Aug 22.
The use of light to facilitate copper-catalyzed cross-couplings of nitrogen nucleophiles can enable C-N bond formation to occur under unusually mild conditions. In this study, we substantially expand the scope of such processes, establishing that this approach is not limited to reactions of carbazoles with iodobenzene and alkyl halides. Specifically, we demonstrate for the first time that other nitrogen nucleophiles (e.g., common pharmacophores such as indoles, benzimidazoles, and imidazoles) as well as other electrophiles (e.g., hindered/deactivated/heterocyclic aryl iodides, an aryl bromide, an activated aryl chloride, alkenyl halides, and an alkynyl bromide) serve as suitable partners. Photoinduced C-N bond formation can be achieved at room temperature using a common procedure with an inexpensive catalyst (CuI) that does not require a ligand coadditive and is tolerant of moisture and a variety of functional groups.
利用光促进氮亲核试剂的铜催化交叉偶联反应,可以在异常温和的条件下实现 C-N 键的形成。在这项研究中,我们大大扩展了这些过程的范围,证明这种方法不仅限于咔唑与碘苯和卤代烷的反应。具体来说,我们首次证明了其他氮亲核试剂(例如常见的药效团,如吲哚、苯并咪唑和咪唑)以及其他亲电试剂(如受阻/失活/杂环芳基碘化物、芳基溴化物、活化的芳基氯、烯基卤化物和炔基溴化物)可以作为合适的反应伙伴。通过使用一种常见的程序,在室温下可以实现光诱导的 C-N 键形成,该程序使用一种廉价的催化剂(CuI),不需要配体添加剂,并且对水分和各种官能团具有耐受性。