Mechanistic insight into palladium-catalyzed cycloisomerization: a combined experimental and theoretical study

Symplectic ID
708017
Source
Ora (Hyrax)
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Friday, 4 September, 2026 - 20:06
DOI
10.1021/jacs.7b05436
Publication Date
Wednesday, 12 July, 2017
First Page
10104
Last Page
10114
Keywords
Journal Article
Authors
Mekareeya, A
Walker, PR
Couce-Rios, A
Campbell, CD
Steven, A
Paton, RS
Anderson, E
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Abstract
The cycloisomerization of enynes catalyzed by Pd(OAc)2 and bis-benzylidene ethylenediamine (bbeda) is a landmark methodology in transition-metal-catalyzed cycloisomerization. However, the mechanistic pathway by which this reaction proceeds has remained unclear for several decades. Here we describe mechanistic investigations into this reaction using enynamides, which deliver azacycles with high regio- and stereocontrol. Extensive (1)H NMR spectroscopic studies and isotope effects support a palladium(II) hydride-mediated pathway and reveal crucial roles of bbeda, water, and the precise nature of the Pd(OAc)2 pre-catalyst. Computational studies support these mechanistic findings and lead to a clear picture of the origins of the high stereocontrol that can be achieved in this transformation, as well as suggesting a novel mechanism by which hydrometalation proceeds.
Publisher
American Chemical Society
ISSN
0002-7863
Journal Title
Journal of the American Chemical Society
eISSN
1520-5126
Volume
139
Issue
29
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uuid_cb2f68e8-355a-45d4-b2d1-9d18badb6a04
Publication Status
Published
Open access
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chem0429,chem0704