Ghosh Soumen, Qu Zheng-Wang, Roy Sourav, Grimme Stefan, Chatterjee Indranil
Department of Chemistry, Indian Institute of Technology Ropar, Nangal Road, Rupnagar, Punjab, 140001, India.
Mulliken Center for Theoretical Chemistry, Clausius Institut für Physikalische und Theoretische Chemie, Rheinische Friedrich-Wilhelms-Universität Bonn, Beringstrasse 4, 53115, Bonn, Germany.
Chemistry. 2023 Feb 24;29(12):e202203428. doi: 10.1002/chem.202203428. Epub 2023 Jan 19.
Selective defluorinative functionalization of trifluoromethyl ketones is a long-standing challenge owing to the exhaustive mode of the process. To meet the demands for the installation of the gem-difluoromethylene unit for the construction of the molecular architectures of well-known pharmaceuticals and agrochemicals, a distinct pathway is thereby highly desirable. Here, a protocol is introduced that allows the divergent synthesis of gem-difluoromethylene group containing tetrahydrofuran derivatives and linear ketones via single C-F bond activation of trifluoromethyl ketones using visible-light photoredox catalysis in the presence of suitable olefins as trapping partner. The choice of appropriate solvent and catalyst plays a significant role in controlling the divergent behavior of this protocol. Highly reducing photo-excited catalysts are found to be responsible for the generation of α,α-difluoromethyl ketone (DFMK) radicals as the key intermediate via a SET process. This protocol also results in a high diastereoselectivity towards the formation of partially fluorinated cyclic ketal derivatives with simultaneous construction of one C-C and two C-O bonds. State-of-the-art DFT calculations are performed to address the origin of diastereoselectivity as well as the divergence of this protocol.
由于该过程的彻底模式,三氟甲基酮的选择性脱氟官能化是一个长期存在的挑战。为了满足在知名药物和农用化学品的分子结构构建中引入偕二氟亚甲基单元的需求,因此非常需要一条独特的途径。在此,介绍了一种方法,该方法允许在合适的烯烃作为捕获伙伴存在的情况下,通过可见光光氧化还原催化对三氟甲基酮进行单C-F键活化,从而发散性合成含偕二氟亚甲基的四氢呋喃衍生物和线性酮。选择合适的溶剂和催化剂在控制该方法的发散行为方面起着重要作用。发现高还原性的光激发催化剂通过单电子转移过程生成α,α-二氟甲基酮(DFMK)自由基作为关键中间体。该方法还导致在形成部分氟化的环状缩酮衍生物时具有高非对映选择性,同时构建一个C-C键和两个C-O键。进行了最先进的密度泛函理论(DFT)计算,以探究非对映选择性的起源以及该方法的发散性。