Department of Chemistry, University of Calcutta 92, A. P. C. Road, Kolkata-700009, India.
Org Biomol Chem. 2022 Apr 6;20(14):2939-2963. doi: 10.1039/d2ob00381c.
Herein, we report a practical and simple mono- and di-C(sp)-O cross-coupling of tautomerizable N-heterocycles (dihydrophthalazine-1,4-diones, pyridone, quinoxalinone and pyrimidinone) with ketones, β-dicarbonyl compounds and nitroalkane, leading to substituted imidate derivatives under visible-light conditions. The combination of rose bengal as the photocatalyst and TBHP enables sustainable reaction conditions, operational simplicity, and high chemo- and regioselectivity with exceptional yields (up to 94%), good functional group tolerance and substrate generality. In the case of unsymmetrical ketones, the less substituted end is functionalized selectively. The di-C-O coupling products are generally obtained with ketones containing three enolizable 'H' at the reaction site while ketones with two enolizable 'H' furnished only single coupling products. Radical inhibition experiments revealed the involvement of a radical pathway in this coupling strategy. The coupling products are also scaled up to the gram scale, offering scope for further functionalizations C-H bond activation.
在此,我们报告了一种实用且简单的单和二 C(sp)-O 交叉偶联反应,可使互变异构的 N-杂环(二氢邻苯二甲嗪-1,4-二酮、吡啶酮、喹喔啉酮和嘧啶酮)与酮、β-二羰基化合物和硝基烷烃发生反应,在可见光条件下得到取代的亚氨基酯衍生物。Rose Bengal 作为光催化剂和 TBHP 的组合实现了可持续的反应条件、操作简单、高化学和区域选择性以及优异的收率(高达 94%)、良好的官能团耐受性和底物通用性。在不对称酮的情况下,选择性地对取代较少的末端进行官能化。二 C-O 偶联产物通常是在反应位点含有三个可烯醇化 'H' 的酮中获得的,而含有两个可烯醇化 'H' 的酮仅提供单一的偶联产物。自由基抑制实验表明,该偶联策略涉及自由基途径。偶联产物也可扩大到克级规模,为进一步的官能化 C-H 键活化提供了机会。