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Meng, Qing-Yuan ; Schirmer, Tobias ; Katou, Kousuke ; König, Burkhard

Controllable Isomerization of Alkenes by Dual Visible-Light-Cobalt Catalysis

Meng, Qing-Yuan, Schirmer, Tobias, Katou, Kousuke and König, Burkhard (2019) Controllable Isomerization of Alkenes by Dual Visible-Light-Cobalt Catalysis. Angewandte Chemie International Edition 131, pp. 5779-5784.

Date of publication of this fulltext: 29 Apr 2019 06:02
Article
DOI to cite this document: 10.5283/epub.40103


Abstract

We report herein that thermodynamic and kinetic isomerization of alkenes can be accomplished by the combination of visible light with Co catalysis. Utilizing Xantphos as the ligand, the most stable isomers are obtained, while isomerizing terminal alkenes over one position can be selectively controlled by using DPEphos as the ligand. The presence of the donor-acceptor dye 4CzIPN accelerates the ...

We report herein that thermodynamic and kinetic isomerization of alkenes can be accomplished by the combination of visible light with Co catalysis. Utilizing Xantphos as the ligand, the most stable isomers are obtained, while isomerizing terminal alkenes over one position can be selectively controlled by using DPEphos as the ligand. The presence of the donor-acceptor dye 4CzIPN accelerates the reaction further. Transformation of exocyclic alkenes into the corresponding endocyclic products could be efficiently realized by using 4CzIPN and Co(acac)(2) in the absence of any additional ligands. Spectroscopic and spectroelectrochemical investigations indicate CoI being involved in the generation of a Co hydride, which subsequently adds to alkenes initiating the isomerization.



Involved Institutions


Details

Item typeArticle
Journal or Publication TitleAngewandte Chemie International Edition
Publisher:Wiley
Place of Publication:WEINHEIM
Volume:131
Page Range:pp. 5779-5784
Date2019
InstitutionsChemistry and Pharmacy > Institut für Organische Chemie
Chemistry and Pharmacy > Institut für Organische Chemie > Lehrstuhl Prof. Dr. Burkhard König
Identification Number
ValueType
10.1002/anie.201900849DOI
KeywordsTHERMAL-DECOMPOSITION; TERMINAL ALKENES; BITE ANGLE; 1-ALKENES; HYDROGEN; MONOISOMERIZATION; DEBROMINATION; COMPLEXES; MECHANISM; EFFICIENT; alkene isomerization; cobalt; photosynthesis; visible light catalysis
Dewey Decimal Classification500 Science > 540 Chemistry & allied sciences
StatusPublished
RefereedYes, this version has been refereed
Created at the University of RegensburgPartially
URN of the UB Regensburgurn:nbn:de:bvb:355-epub-401036
Item ID40103

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