Inorganic Chemistry II, Catalyst Design, Universität Bayreuth , 95440 Bayreuth, Germany.
J Am Chem Soc. 2016 Aug 31;138(34):10786-9. doi: 10.1021/jacs.6b06448. Epub 2016 Aug 16.
The borrowing hydrogen or hydrogen autotransfer methodology is an elegant and sustainable or green concept to construct carbon-carbon bonds. In this concept, alcohols, which can be obtained from barely used and indigestible biomass, such as lignocellulose, are employed as alkylating reagents. An especially challenging alkylation is that of unactivated esters and amides. Only noble metal catalysts based on iridium and ruthenium have been used to accomplish these reactions. Herein, we report on the first base metal-catalyzed α-alkylation of unactivated amides and esters by alcohols. Cobalt complexes stabilized with pincer ligands, recently developed in our laboratory, catalyze these reactions very efficiently. The precatalysts can be synthesized easily from commercially available starting materials on a multigram scale and are self-activating under the basic reaction conditions. This Co catalyst class is also able to mediate alkylation reactions of both esters and amides. In addition, we apply the methodology to synthesize ketones and to convert alcohols into aldehydes elongated by two carbon atoms.
借氢或氢转移方法学是构建碳-碳键的一种优雅、可持续或绿色的概念。在这个概念中,醇可以从几乎未使用和难以消化的生物质如木质纤维素中获得,用作烷基化试剂。特别具有挑战性的烷基化是对未活化的酯和酰胺的烷基化。只有基于铱和钌的贵金属催化剂被用于完成这些反应。在此,我们报告了首例通过醇实现未活化酰胺和酯的α-烷基化的基于廉价金属的催化反应。最近在我们实验室中开发的带有夹持配体稳定的钴配合物可以非常有效地催化这些反应。前催化剂可以很容易地从商业上可获得的起始原料在多克规模上合成,并在碱性反应条件下自激活。这种 Co 催化剂还能够介导酯和酰胺的烷基化反应。此外,我们将该方法应用于酮的合成以及将醇转化为两个碳原子延长的醛。