Abstract
An electrochemical method for the green and practical synthesis of a broad range of substituted isoxazoline cores is presented. Both aryl and more challenging alkyl aldoximes are converted to the desired isoxazoline in an electrochemically enabled regio- and diastereoselective reaction with electron-deficient alkenes. Additionally, in-situ reaction monitoring methods compatible with electrochemistry equipment have been developed in order to probe the reaction pathway. Supporting analyses from kinetic (time-course) modelling and density functional theory support a stepwise, radical-mediated mechanism, and discounts hypothesised involvement of closed shell [3+2] cycloaddition pathways.
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Holman, S. D. L., Wills, A. G., Fazakerley, N. J., Poole, D. L., Coe, D. M., Berlouis, L. A., & Reid, M. (2022). Electrochemical Synthesis of Isoxazolines: Method and Mechanism. Chemistry - A European Journal, 28(13). https://doi.org/10.1002/chem.202103728
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