Base-Catalyzed [1, n]-Proton Shifts in Conjugated Polyenyl Alcohols and Ethers

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Abstract

The isomerization of dienyl alcohols and polyenyl alkyl ethers catalyzed by TBD (1,5,7-triazabicyclo[4.4.0]dec-5-ene) under metal-free conditions is presented. Two reaction pathways have been observed. For dienyl alcohols, the reaction proceeds by a [1,3]-proton shift to give γ,δ-unsaturated ketones exclusively. On the other hand, the reaction with polyenyl alkyl ethers gives the corresponding conjugated vinyl ethers in good yields (up to 85%), with regioselectivities up to >20:1. Experimental and computational investigations suggest that the mechanism proceeds through consecutive "chain-walking" proton shifts ("base walk") mediated by TBD.

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Molleti, N., Martinez-Erro, S., Carretero Cerdán, A., Sanz-Marco, A., Gomez-Bengoa, E., & Martín-Matute, B. (2019). Base-Catalyzed [1, n]-Proton Shifts in Conjugated Polyenyl Alcohols and Ethers. ACS Catalysis, 9(10), 9134–9139. https://doi.org/10.1021/acscatal.9b02478

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