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
“…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 .…”
An unexpected transformation of 1,6-diarylhexa-1,5-diene-3,4-diones (cinnamils) to 2,3,8-triaryl vinyl fulvenes via N-Heterocyclic Carbene (NHC) catalysis is reported. Mechanistic as well as synthetic novelty is the hallmark of this reaction.
“…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 .…”
An unexpected transformation of 1,6-diarylhexa-1,5-diene-3,4-diones (cinnamils) to 2,3,8-triaryl vinyl fulvenes via N-Heterocyclic Carbene (NHC) catalysis is reported. Mechanistic as well as synthetic novelty is the hallmark of this reaction.
“…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
This review highlights the successful utilization of transition-metal-free approaches for the modular assembly of various heterocycles from alkynoates.
“…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 .…”
We have developed phosphine-catalyzed annulation reactions for the synthesis of highly substituted cyclopentene derivatives from 2-alkynoate and α-keto esters. These transformations involve carbon−carbon bond cleavage of α-keto esters. Preliminary mechanistic studies suggest that, in addition to facilitating carbon−carbon bond formation, the phosphine catalyst plays a role in promoting methanolysis.
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