Department of Chemistry, University of California, Berkeley, CA, USA.
Nat Chem. 2019 Feb;11(2):177-183. doi: 10.1038/s41557-018-0165-x. Epub 2018 Nov 19.
The enantioselective construction of carbon-heteroatom and carbon-carbon bonds that are alpha to ketones leads to the formation of substructures that are ubiquitous in natural products, pharmaceuticals and agrochemicals. Traditional methods to form such bonds have relied on combining ketone enolates with electrophiles. Reactions with heteroatom-based electrophiles require special reagents in which the heteroatom, which is typically nucleophilic, has been rendered electrophilic by changes to the oxidation state. The resulting products usually require post-synthetic transformations to unveil the functional group in the final desired products. Moreover, different catalytic systems are typically required for the reaction of different electrophiles. Here, we report a strategy for the formal enantioselective α-functionalization of ketones to form products containing a diverse array of substituents at the alpha position with a single catalyst. This strategy involves an unusual reversal of the role of the nucleophile and electrophile to form C-N, C-O, C-S and C-C bonds from a series of masked ketone electrophiles and a wide range of conventional heteroatom and carbon nucleophiles catalysed by a metallacyclic iridium catalyst.
手性选择性构建与酮基α位相连的碳杂原子键和碳碳键,能够形成在天然产物、药物和农用化学品中普遍存在的亚结构。传统形成这些键的方法依赖于酮烯醇盐与亲电试剂的结合。与杂原子亲电试剂的反应需要特殊的试剂,其中杂原子通常是亲核的,通过改变氧化态而具有亲电性。得到的产物通常需要进行后期的合成转化,以在最终所需产物中揭示官能团。此外,对于不同的亲电试剂,通常需要不同的催化体系。在这里,我们报告了一种策略,用于酮的手性选择性α官能化,以形成在α位具有各种取代基的产物,该策略使用单一催化剂,通过一系列掩蔽的酮亲电试剂和一系列常规的杂原子和碳亲核试剂,形成 C-N、C-O、C-S 和 C-C 键。该策略涉及亲核试剂和亲电试剂作用的反常反转,由金属环铱催化剂催化。