Zinc-Catalyzed Alkyne Oxidation/CH Functionalization: Highly Site-Selective Synthesis of Versatile Isoquinolones and β-Carbolines

An efficient zinc(II)‐catalyzed alkyne oxidation/CH functionalization sequence was developed, thus leading to highly site‐selective synthesis of a variety of isoquinolones and β‐carbolines. Importantly, in contrast to the well‐established gold‐catalyzed intermolecular alkyne oxidation, over‐oxidati...

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Published inAngewandte Chemie International Edition Vol. 54; no. 28; pp. 8245 - 8249
Main Authors Li, Long, Zhou, Bo, Wang, Yong-Heng, Shu, Chao, Pan, Yi-Fei, Lu, Xin, Ye, Long-Wu
Format Journal Article
LanguageEnglish
Published Weinheim WILEY-VCH Verlag 06.07.2015
WILEY‐VCH Verlag
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Summary:An efficient zinc(II)‐catalyzed alkyne oxidation/CH functionalization sequence was developed, thus leading to highly site‐selective synthesis of a variety of isoquinolones and β‐carbolines. Importantly, in contrast to the well‐established gold‐catalyzed intermolecular alkyne oxidation, over‐oxidation can be completely suppressed in this system and the reaction most likely proceeds by a Friedel–Crafts‐type pathway. Mechanistic studies and theoretical calculations are described. Swap gold for zinc: The title reaction was achieved by a zinc(II)‐catalyzed alkyne oxidation/CH functionalization sequence. In contrast to the well‐established gold‐catalyzed intermolecular alkyne oxidation, the over‐oxidation can be suppressed in this system and the reaction most likely proceeds by a Friedel–Crafts‐type pathway. Tf=trifluoromethanesulfonyl, PG=protecting group.
Bibliography:istex:49BF7EE575BA51F6A84695DB809D5C8B10393835
PCSIRT
NFFTBS - No. J1310024
NNSFC - No. 21272191; No. 21273177
ArticleID:ANIE201502553
ark:/67375/WNG-5QHMGF3C-Z
We are grateful for financial support from NNSFC (No. 21272191 and 21273177), NFFTBS (No. J1310024), and PCSIRT.
These authors contributed equally to this work.
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ISSN:1433-7851
1521-3773
1521-3773
DOI:10.1002/anie.201502553