Peacock D Matthew, Roos Casey B, Hartwig John F
Department of Chemistry, University of California , Berkeley, California 94720, United States.
ACS Cent Sci. 2016 Sep 28;2(9):647-652. doi: 10.1021/acscentsci.6b00187. Epub 2016 Sep 1.
We report a new class of catalytic reaction: the thermal substitution of a secondary and or tertiary alkyl halide with a nitrogen nucleophile. The alkylation of a nitrogen nucleophile with an alkyl halide is a classical method for the construction of C-N bonds, but traditional substitution reactions are challenging to achieve with a secondary and or tertiary alkyl electrophile due to competing elimination reactions. A catalytic process could address this limitation, but thermal, catalytic coupling of alkyl halides with a nitrogen nucleophile and any type of catalytic coupling of an unactivated tertiary alkyl halide with a nitrogen nucleophile are unknown. We report the coupling of unactivated secondary and tertiary alkyl bromides with benzophenone imines to produce protected primary amines in the presence of palladium ligated by the hindered trialkylphosphine Cy-BuP. Mechanistic studies indicate that this amination of alkyl halides occurs by a reversible reaction to form a free alkyl radical.
仲卤代烃和叔卤代烃与亲核氮试剂的热取代反应。卤代烃与亲核氮试剂的烷基化反应是构建C-N键的经典方法,但由于竞争消除反应,传统的取代反应很难用仲卤代烃和叔卤代烃作为亲电试剂来实现。催化过程可以解决这一限制,但卤代烃与亲核氮试剂的热催化偶联以及未活化叔卤代烃与亲核氮试剂的任何类型的催化偶联尚属未知。我们报道了在受阻三烷基膦Cy-BuP配位的钯存在下,未活化的仲溴代烃和叔溴代烃与二苯甲酮亚胺偶联生成保护的伯胺。机理研究表明,这种卤代烃的胺化反应是通过一个可逆反应形成游离烷基自由基来进行的。