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一种通用的给体-受体复合物光活化的有机催化体系及其在自由基过程中的应用。

A General Organocatalytic System for Electron Donor-Acceptor Complex Photoactivation and Its Use in Radical Processes.

机构信息

ICIQ-Institute of Chemical Research of Catalonia, the Barcelona Institute of Science and Technology, Avinguda Països Catalans 16, 43007 Tarragona, Spain.

ICREA-Catalan Institution for Research and Advanced Studies, Passeig Lluís Companys 23, 08010 Barcelona, Spain.

出版信息

J Am Chem Soc. 2021 Aug 11;143(31):12304-12314. doi: 10.1021/jacs.1c05607. Epub 2021 Jul 28.

Abstract

We report herein a modular class of organic catalysts that, acting as donors, can readily form photoactive electron donor-acceptor (EDA) complexes with a variety of radical precursors. Excitation with visible light generates open-shell intermediates under mild conditions, including nonstabilized carbon radicals and nitrogen-centered radicals. The modular nature of the commercially available xanthogenate and dithiocarbamate anion organocatalysts offers a versatile EDA complex catalytic platform for developing mechanistically distinct radical reactions, encompassing redox-neutral and net-reductive processes. Mechanistic investigations, by means of quantum yield determination, established that a closed catalytic cycle is operational for all of the developed radical processes, highlighting the ability of the organic catalysts to turn over and iteratively drive every catalytic cycle. We also demonstrate how the catalysts' stability and the method's high functional group tolerance could be advantageous for the direct radical functionalization of abundant functional groups, including aliphatic carboxylic acids and amines, and for applications in the late-stage elaboration of biorelevant compounds and enantioselective radical catalysis.

摘要

我们在此报告了一类模块化的有机催化剂,它们作为供体,能够与各种自由基前体轻易形成光活性电子给体-受体(EDA)配合物。在温和条件下,可见光激发会生成开壳中间体,包括非稳定的碳自由基和含氮自由基。市售的黄原酸盐和硫代氨基甲酸盐阴离子有机催化剂的模块化性质为开发具有不同机制的自由基反应提供了一个多功能的 EDA 配合物催化平台,涵盖了氧化还原中性和净还原过程。通过量子产率测定进行的机理研究表明,所有开发的自由基过程都采用封闭的催化循环,突出了有机催化剂的周转和迭代驱动每个催化循环的能力。我们还展示了催化剂的稳定性和该方法对包括脂肪族羧酸和胺在内的丰富官能团的直接自由基官能化以及在生物相关化合物的后期修饰和对映选择性自由基催化中的应用的高官能团耐受性如何具有优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f4a/8361436/dd9ffdad7519/ja1c05607_0001.jpg

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