2008
DOI: 10.1002/chem.200800250
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Pyridine‐Catalyzed Stereoselective Addition of Acyclic 1,2‐Diones to Acetylenic Esters: Synthetic and Theoretical Studies of an Unprecedented Rearrangement

Abstract: A systematic study of the addition of various 1,2-acyclic diones to activated acetylenic esters catalyzed by pyridine under mild conditions is described. This reaction provides a new protocol for the stereoselective synthesis of 1,2-diaroyl maleates. The exclusive formation of the cis isomer is especially noteworthy. This reaction occurs through the initial generation of a pyridine-dimethyl acetylene dicarboxylate zwitterion and its addition to the dione followed by an unprecedented benzoyl migration. Pyridine… Show more

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Cited by 20 publications
(4 citation statements)
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“…It is conceivable that the addition of IMes to one of the carbonyls of cinnamil will be followed by the formation of the epoxy derivative A 1 , by a process analogous to the one reported previously . Clearly A 1 is set up for a [3,3] sigmatropic rearrangement to afford the oxepine derivative C .…”
mentioning
confidence: 78%
“…It is conceivable that the addition of IMes to one of the carbonyls of cinnamil will be followed by the formation of the epoxy derivative A 1 , by a process analogous to the one reported previously . Clearly A 1 is set up for a [3,3] sigmatropic rearrangement to afford the oxepine derivative C .…”
mentioning
confidence: 78%
“…Subsequent isomerization and rearrangement produced intermediate 429. [356][357][358] Another proton transfer alongside concerted ester group migration and cyclization furnished intermediate 431. Isomerization to 432 followed by deprotonation gave intermediate 433 which underwent cyclization to form intermediate 434.…”
Section: Divergent Reactivity Of Alkynoatesmentioning
confidence: 99%
“…The transfer of a proton to give intermediate C followed by an addition reaction to 1a results in intermediate D , which undergoes isomerization to intermediate E . A rearrangement reaction involving C–C bond cleavage leads to intermediate F . The transfer of a proton to intermediate G followed by a concerted ester group transfer and cyclization reaction results in intermediate H . Isomerization to I and subsequent deprotonation gives intermediate J , which is primed for a second annulation reaction leading to intermediate K .…”
Section: Mechanism-driven Experimentsmentioning
confidence: 99%