Britton Luke, Docherty Jamie H, Sklyaruk Jan, Cooney Jessica, Nichol Gary S, Dominey Andrew P, Thomas Stephen P
EaStCHEM School of Chemistry, University of Edinburgh Edinburgh EH9 3FJ UK
GSK Medicines Research Centre Stevenage SG1 2NY UK.
Chem Sci. 2022 Aug 11;13(35):10291-10298. doi: 10.1039/d2sc03802a. eCollection 2022 Sep 14.
C-H functionalisation reactions offer a sustainable method for molecular construction and diversification. These reactions however remain dominated by precious metal catalysis. While significant interest in iron-catalysed C-H activation reactions has emerged, the isolation, characterisation and mechanistic understanding of these processes remain lacking. Herein the iron-catalysed C(sp)-H bond hydrogen/deuterium exchange reaction using CDOD is reported for both heterocycles and, for the first time, alkenes (38 examples). Isolation and characterisation, including by single-crystal X-ray diffraction, of the key iron-aryl and iron-alkenyl C-H metallation intermediates provided evidence for a reversible protonation of the active iron hydride catalyst. Good chemoselectivity was observed for both substrate classes. The developed procedure is orthogonal to previous iron-catalysed H/D exchange methods which used CD, D, or DO as the deuterium source, and uses only bench-stable reagents, including the iron(ii) pre-catalyst. Further, a new mechanism of iron-hydride formation is reported in which β-hydride elimination from an alcohol generates the iron hydride. The ability to produce, isolate and characterise the organometallic products arising from C-H activation presents a basis for future discovery and development.
碳-氢官能团化反应为分子构建和多样化提供了一种可持续的方法。然而,这些反应仍然主要由贵金属催化主导。尽管人们对铁催化的碳-氢活化反应产生了浓厚兴趣,但对这些过程的分离、表征和机理理解仍然不足。本文报道了使用CDOD对杂环以及首次对烯烃(38个实例)进行的铁催化碳(sp)-氢键氢/氘交换反应。通过单晶X射线衍射等方法对关键的铁-芳基和铁-烯基碳-氢金属化中间体进行了分离和表征,为活性氢化铁催化剂的可逆质子化提供了证据。对这两类底物都观察到了良好的化学选择性。所开发的方法与以前使用CD、D或DO作为氘源的铁催化氢/氘交换方法正交,并且仅使用包括铁(II)预催化剂在内的实验室稳定试剂。此外,还报道了一种新的氢化铁形成机制,其中醇的β-氢消除生成氢化铁。产生、分离和表征由碳-氢活化产生的有机金属产物的能力为未来的发现和发展奠定了基础。