The synthesis of sterically hindered α-functionalized phosphonium salts is of significant interest yet remains challenging. This work presents a difunctionalization of aldehydes with electrophilic acylphosphonium salts to access α-acyloxyphosphonium salts. The reaction was scoped across 43 examples with varied aldehyde and acylphosphonium salt structures, affording α-acyloxyphosphonium salts in yields ranging from 17% to 95%. These products can engage with aldehydes in Wittig reactions to generate diverse substituted enol esters. Mechanism studies indicate that the additive acts as a nucleophile, facilitating the dissociation of trivalent phosphine from an intermediate acyl group. This study enhances our understanding of acylphosphonium salts as a novel class of electrophilic reagents and provides valuable insights for their future application in organic synthesis.
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Yuting Zhang
State Key Laboratory of Chemical Engineering
Lu Sun
State Key Laboratory of Chemical Engineering
Wenjuan Mao
State Key Laboratory of Chemical Engineering
Organic Letters
Beijing University of Chemical Technology
Guangzhou Medical University
State Key Laboratory of Chemical Engineering
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Zhang et al. (Sun,) studied this question.
synapsesocial.com/papers/69ba43f74e9516ffd37a5afa — DOI: https://doi.org/10.1021/acs.orglett.6c00768
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