Fine-Tuning the Electronic Properties of Binuclear Bis(terpyridyl)ruthenium(II) Complexes

Vastly improved photophysical properties of terminal RuII terpyridine‐based chromophores is achieved by insertion of an ethynylene group between the terpyridine ligand and a covalently linked aromatic nucleus. In the case where the aromatic nucleus possesses vacant coordination sites, as shown in 1,...

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Published in:Angewandte Chemie International Edition Vol. 37; no. 12; pp. 1717 - 1720
Main Authors: Hissler, Muriel, El-ghayoury, Abdelkrim, Harriman, Anthony, Ziessel, Raymond
Format: Journal Article
Language:English
Published: Weinheim WILEY-VCH Verlag GmbH 03-07-1998
WILEY‐VCH Verlag GmbH
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Abstract Vastly improved photophysical properties of terminal RuII terpyridine‐based chromophores is achieved by insertion of an ethynylene group between the terpyridine ligand and a covalently linked aromatic nucleus. In the case where the aromatic nucleus possesses vacant coordination sites, as shown in 1, complexation of certain cations (e. g., Zn2+, Cd2+, or Ba2+) at the central unit gives a further improvement in the photoproperties due to a better blending of the respective LUMO levels.
AbstractList Vastly improved photophysical properties of terminal RuII terpyridine-based chromophores is achieved by insertion of an ethynylene group between the terpyridine ligand and a covalently linked aromatic nucleus. In the case where the aromatic nucleus possesses vacant coordination sites, as shown in 1, complexation of certain cations (e. g., Zn2+ , Cd2+ , or Ba2+ ) at the central unit gives a further improvement in the photoproperties due to a better blending of the respective LUMO levels.
Vastly improved photophysical properties of terminal Ru terpyridine-based chromophores is achieved by insertion of an ethynylene group between the terpyridine ligand and a covalently linked aromatic nucleus. In the case where the aromatic nucleus possesses vacant coordination sites, as shown in 1, complexation of certain cations (e. g., Zn , Cd , or Ba ) at the central unit gives a further improvement in the photoproperties due to a better blending of the respective LUMO levels.
Author Ziessel, Raymond
Hissler, Muriel
Harriman, Anthony
El-ghayoury, Abdelkrim
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Keywords Molecular electronics
Ruthenium
Coordination modes
Luminescence
Photochemistry
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Snippet Vastly improved photophysical properties of terminal RuII terpyridine‐based chromophores is achieved by insertion of an ethynylene group between the...
Vastly improved photophysical properties of terminal Ru terpyridine-based chromophores is achieved by insertion of an ethynylene group between the terpyridine...
Vastly improved photophysical properties of terminal RuII terpyridine-based chromophores is achieved by insertion of an ethynylene group between the...
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SubjectTerms Coordination modes
Luminescence
Molecular electronics
Photochemistry
Ruthenium
Title Fine-Tuning the Electronic Properties of Binuclear Bis(terpyridyl)ruthenium(II) Complexes
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