Leibniz University of Hannover, Institute of Organic Chemistry, Schneiderberg 1, 30167 Hannover (Germany).
Angew Chem Int Ed Engl. 2014 Jan 27;53(5):1208-17. doi: 10.1002/anie.201307391. Epub 2013 Dec 9.
Investigations of excited-state redox processes have an exceptional impact on the field of organic photochemistry and its application to the synthesis of complex target molecules. In such a photochemical process a single-electron transfer takes place to produce ion-radical intermediates, if the reduction and oxidation potentials, as well as excited-state energies of electron donors and acceptors are chosen appropriately. The Witkop cyclization constitutes an intramolecular variant of such a process, typically with an indole heterocycle as an electron donor. The specific synthetic value of this reaction lies in a CC bond formation without requiring any prefunctionalization of the indole system. Although this photoreaction has been applied to the total synthesis of natural products, it has still not been used to its full capacity. The following review details synthetic efforts using the Witkop cyclization, and aims to incite further applications of reaction in the synthesis of complex molecular architectures.
激发态氧化还原过程的研究对有机光化学及其在复杂目标分子合成中的应用有重大影响。在这样的光化学反应中,如果电子供体和受体的还原和氧化电位以及激发态能量选择得当,就会发生单电子转移,产生离子自由基中间体。Witkop 环化是这种过程的分子内变体,通常以吲哚杂环为电子供体。该反应的特殊合成价值在于形成 CC 键,而无需吲哚系统的任何预官能化。尽管这种光反应已应用于天然产物的全合成,但尚未充分发挥其潜力。以下综述详细介绍了使用 Witkop 环化的合成工作,旨在激发该反应在复杂分子结构合成中的进一步应用。