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  4. Photochemical Functionalization of Heterocycles with EBX Reagents: C-H Alkynylation versus Deconstructive Ring Cleavage
 
research article

Photochemical Functionalization of Heterocycles with EBX Reagents: C-H Alkynylation versus Deconstructive Ring Cleavage

Voutyritsa, Errika
•
Garreau, Marion  
•
Kokotou, Maroula G.
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August 27, 2020
Chemistry-A European Journal

The development of novel methodologies for the functionalization of saturated heterocycles is highly desirable. Herein, we report a cheap and efficient photochemical method for the C-H functionalization of saturated O-heterocycles, as well as the deconstructive ring-cleavage of S-heterocycles, employing hypervalent iodine alkynylation reagents (ethynylbenziodoxolones, EBX). This photochemical alkynylation is performed utilizing phenylglyoxylic acid as the photoinitiator, leading to the corresponding products in good to high yields, under household fluorescent light bulb irradiation. When O-heterocycles were employed, the expected alpha-C-H alkynylation took place. In contrast, oxidative ring-opening to form a thioalkyne and an aldehyde was observed with S-heterocycles. Preliminary mechanistic experiments are presented to give first insights into this puzzling divergent reactivity.

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Type
research article
DOI
10.1002/chem.202002868
Web of Science ID

WOS:000575226000001

Author(s)
Voutyritsa, Errika
Garreau, Marion  
Kokotou, Maroula G.
Triandafillidi, Ierasia
Waser, Jerome  
Kokotos, Christoforos G.
Date Issued

2020-08-27

Published in
Chemistry-A European Journal
Volume

26

Start page

14453

End page

14460

Subjects

Chemistry, Multidisciplinary

•

Chemistry

•

c-h activation

•

ebx-reagents

•

hydrogen atom transfer

•

metal-free processes

•

photochemistry

•

visible-light photoredox

•

hypervalent iodine reagents

•

alpha-keto acids

•

s bond-cleavage

•

carboxylic-acids

•

decarboxylative alkynylation

•

dialkyl azodicarboxylates

•

atom-transfer

•

aryl halides

•

hydroacylation

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCSO  
LPQM  
Available on Infoscience
October 21, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/172637
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