Immobilization and Continuous Recycling of Photoredox Catalysts in Ionic Liquids for Applications in Batch Reactions and Flow Systems: Catalytic Alkene Isomerization by Using Visible Light

A catalytic (E)‐ to (Z)‐isomerization of olefins using a photoredox catalyst under mild reaction conditions is presented. A variety of (Z)‐alkenes can be prepared in the presence of visible light. A new reaction system allows an easy and efficient scale‐up, as well as a continuous flow process in wh...

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Published inChemistry : a European journal Vol. 21; no. 14; pp. 5350 - 5354
Main Authors Fabry, David C., Ronge, Meria A., Rueping, Magnus
Format Journal Article
LanguageEnglish
Published Weinheim WILEY-VCH Verlag 27.03.2015
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Abstract A catalytic (E)‐ to (Z)‐isomerization of olefins using a photoredox catalyst under mild reaction conditions is presented. A variety of (Z)‐alkenes can be prepared in the presence of visible light. A new reaction system allows an easy and efficient scale‐up, as well as a continuous flow process in which the photocatalyst is immobilized in an ionic liquid and continuously recycled by simple phase separation. Catalytic (E)‐ to (Z)‐isomerizations of olefins under mild conditions can be achieved by use of a photosensitizer and visible light. A new reaction system such as depicted allows an easy and efficient scale‐up, as well as continuous flow processes in which the photocatalyst is immobilized in an ionic liquid and continuously recycled by phase separation.
AbstractList A catalytic (E)- to (Z)-isomerization of olefins using a photoredox catalyst under mild reaction conditions is presented. A variety of (Z)-alkenes can be prepared in the presence of visible light. A new reaction system allows an easy and efficient scale-up, as well as a continuous flow process in which the photocatalyst is immobilized in an ionic liquid and continuously recycled by simple phase separation.
A catalytic (E)‐ to (Z)‐isomerization of olefins using a photoredox catalyst under mild reaction conditions is presented. A variety of (Z)‐alkenes can be prepared in the presence of visible light. A new reaction system allows an easy and efficient scale‐up, as well as a continuous flow process in which the photocatalyst is immobilized in an ionic liquid and continuously recycled by simple phase separation. Catalytic (E)‐ to (Z)‐isomerizations of olefins under mild conditions can be achieved by use of a photosensitizer and visible light. A new reaction system such as depicted allows an easy and efficient scale‐up, as well as continuous flow processes in which the photocatalyst is immobilized in an ionic liquid and continuously recycled by phase separation.
A catalytic (E)- to (Z)-isomerization of olefins using a photoredox catalyst under mild reaction conditions is presented. A variety of (Z)-alkenes can be prepared in the presence of visible light. A new reaction system allows an easy and efficient scale-up, as well as a continuous flow process in which the photocatalyst is immobilized in an ionic liquid and continuously recycled by simple phase separation. Catalytic (E)- to (Z)-isomerizations of olefins under mild conditions can be achieved by use of a photosensitizer and visible light. A new reaction system such as depicted allows an easy and efficient scale-up, as well as continuous flow processes in which the photocatalyst is immobilized in an ionic liquid and continuously recycled by phase separation.
Abstract A catalytic ( E )‐ to ( Z )‐isomerization of olefins using a photoredox catalyst under mild reaction conditions is presented. A variety of ( Z )‐alkenes can be prepared in the presence of visible light. A new reaction system allows an easy and efficient scale‐up, as well as a continuous flow process in which the photocatalyst is immobilized in an ionic liquid and continuously recycled by simple phase separation.
Author Fabry, David C.
Rueping, Magnus
Ronge, Meria A.
Author_xml – sequence: 1
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  surname: Fabry
  fullname: Fabry, David C.
  organization: Institut für Organische Chemie, RWTH Aachen, Landoltweg 1, 52074 Aachen (Germany), Fax: (+49) 241-809-2127
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  givenname: Meria A.
  surname: Ronge
  fullname: Ronge, Meria A.
  organization: Institut für Organische Chemie, RWTH Aachen, Landoltweg 1, 52074 Aachen (Germany), Fax: (+49) 241-809-2127
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  givenname: Magnus
  surname: Rueping
  fullname: Rueping, Magnus
  email: magnus.rueping@rwth-aachen.de
  organization: Institut für Organische Chemie, RWTH Aachen, Landoltweg 1, 52074 Aachen (Germany), Fax: (+49) 241-809-2127
BackLink https://www.ncbi.nlm.nih.gov/pubmed/25694030$$D View this record in MEDLINE/PubMed
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Issue 14
Keywords RESVERATROL
immobilization
isomerization
COMPLEXES
MECHANISMS
photocatalyst
EXCITED-STATES
STILBENE
OLEFINATION
CHEMISTRY
SINGLET OXYGEN
PHOTOCHEMISTRY
ionic liquids
EFFICIENT
flow chemistry
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Snippet A catalytic (E)‐ to (Z)‐isomerization of olefins using a photoredox catalyst under mild reaction conditions is presented. A variety of (Z)‐alkenes can be...
A catalytic (E)- to (Z)-isomerization of olefins using a photoredox catalyst under mild reaction conditions is presented. A variety of (Z)-alkenes can be...
Abstract A catalytic ( E )‐ to ( Z )‐isomerization of olefins using a photoredox catalyst under mild reaction conditions is presented. A variety of ( Z...
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SubjectTerms Catalysis
Catalysts
Chemistry
Chemistry, Multidisciplinary
Continuous flow
flow chemistry
immobilization
Ionic liquids
Ions
isomerization
Liquids
Olefins
Phase separation
photocatalyst
Photocatalysts
Physical Sciences
Recycled
Science & Technology
Solvents
Title Immobilization and Continuous Recycling of Photoredox Catalysts in Ionic Liquids for Applications in Batch Reactions and Flow Systems: Catalytic Alkene Isomerization by Using Visible Light
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https://www.proquest.com/docview/1664112718
https://search.proquest.com/docview/1665118595
https://search.proquest.com/docview/1786189860
Volume 21
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