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. 2023 Dec 4;62(49):e202311539.
doi: 10.1002/anie.202311539. Epub 2023 Sep 28.

Metal-Free Electrocatalytic Diacetoxylation of Alkenes

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Metal-Free Electrocatalytic Diacetoxylation of Alkenes

Jef R Vanhoof et al. Angew Chem Int Ed Engl. .

Abstract

1,2-Dioxygenation of alkenes leads to a structural motif ubiquitous in organic synthons, natural products and active pharmaceutical ingredients. Straightforward and green synthesis protocols starting from abundant raw materials are required for facile and sustainable access to these crucial moieties. Especially industrially abundant aliphatic alkenes have proven to be arduous substrates in sustainable 1,2-dioxygenation methods. Here, we report a highly efficient electrocatalytic diacetoxylation of alkenes under ambient conditions using a simple iodobenzene mediator and acetic acid as both the solvent and an atom-efficient reactant. This transition metal-free method is applicable to a wide range of alkenes, even challenging feedstock alkenes such as ethylene and propylene, with a broad functional group tolerance and excellent faradaic efficiencies up to 87 %. In addition, this protocol can be extrapolated to alkenoic acids, resulting in cyclization of the starting materials to valuable lactone derivatives. With aromatic alkenes, a competing mechanism of direct anodic oxidation exists which enables reaction under catalyst-free conditions. The synthetic method is extensively investigated with cyclic voltammetry.

Keywords: Alkenes; Electrochemistry; Hypervalent Compounds; Reaction Mechanisms; Synthetic Methods.

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References

    1. C. Wang, Asian J. Org. Chem. 2018, 7, 509-521.
    1. B. Tian, P. Chen, X. Leng, G. Liu, Nat. Catal. 2021, 4, 172-179.
    1. R. Bag, P. Bhusan De, S. Pradhan, T. Punniyamurthy, Eur. J. Org. Chem. 2017, 5424-5438.
    1. M. J. Rawling, N. C. O. Tomkinson, Org. Biomol. Chem. 2013, 11, 1434-1440.
    1. H. C. Kolb, M. S. Van Nieuwenhze, B. K. Sharpless, Chem. Rev. 1994, 94, 2483-2547.

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