Hydroalkylation of Alkynes: Functionalization of the Alkenyl Copper Intermediate through Single Electron Transfer Chemistry
作者:Avijit Hazra、Jonathan A. Kephart、Alexandra Velian、Gojko Lalic
DOI:10.1021/jacs.1c03396
日期:2021.6.2
of terminal alkynes and α-bromo carbonyls to generate functionalized E-alkenes. The coupling is accomplished by merging the closed-shell hydrocupration of alkynes with the open-shell single electron transfer (SET) chemistry of the resulting alkenyl copper intermediate. We demonstrate that the reaction is compatible with various functional groups and can be performed in the presence of aryl bromides,
我们开发了一种末端炔烃和α-溴羰基立体选择性偶联生成官能化E-烯烃的方法。偶联是通过将炔烃的闭壳氢化铜化与所得烯基铜中间体的开壳单电子转移 (SET) 化学相结合来实现的。我们证明该反应与各种官能团相容,并且可以在芳基溴、烷基氯、烷基溴、酯、腈、酰胺和多种含氮杂环化合物的存在下进行。机理研究为通过 α-溴酯对烯基铜中间体进行 SET 氧化提供了证据,这是实现交叉偶联的关键步骤。
Cooperative Ligand-Promoted P<sup>(III)</sup>-Directed Ruthenium-Catalyzed Remote <i>Meta</i>-C–H Alkylation of Tertiary Phosphines
ruthenium-catalyzed meta-selective C–H activation of phosphines by using intrinsic P(III) as a directing group. 2,2,6,6-Tetramethylheptane-3,5-dione acts as the ligand and exhibits an excellent performance in boosting the meta-alkylation. The protocol allows an efficient and straightforward synthesis of meta-alkylated tertiaryphosphines. Several meta-alkylated phosphines were evaluated for Pd-catalyzed Suzuki coupling
Nickel-Catalyzed Asymmetric <i>C</i>-Alkylation of Nitroalkanes: Synthesis of Enantioenriched β-Nitroamides
作者:Vijayarajan Devannah、Rajgopal Sharma、Donald A. Watson
DOI:10.1021/jacs.9b04175
日期:2019.5.29
A general catalytic method for asymmetric C-alkylation of nitroalkanes using nickel catalysis is described. This method enables the formation of highly enantioenriched β-nitroamides from readily available α-bromoamides using mild reaction conditions that are compatible with a wide range of functional groups. When combined with subsequent reactions, this method allows access to highly enantioenriched