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Redox-driven porphyrin based systems for new luminescent molecular switches.

Authors :
Norel, Lucie
Tourbillon, Clarisse
Warnan, Julien
Audibert, Jean-Frédéric
Pellegrin, Yann
Miomandre, Fabien
Odobel, Fabrice
Rigaut, Stéphane
Source :
Dalton Transactions: An International Journal of Inorganic Chemistry; 7/1/2018, Vol. 47 Issue 25, p8364-8374, 11p
Publication Year :
2018

Abstract

In this work, we explore the possibility of tuning the fluorescence intensity of two porphyrin systems through the electrochemical oxidation of an appended ruthenium acetylide bridge. Two electrochemically switchable systems, a dyad (ZnP-Ru, 3) and a triad (ZnP-Ru-P2H, 5), were prepared and investigated. In the ZnP-Ru dyad, the fluorescence of the zinc porphyrin was switched reversibly between the ON and OFF state upon the oxidation of the ruthenium unit, the most probable quenching process involved after oxidation being the electron transfer from the singlet excited state of ZnP to the oxidized ruthenium center. In the ZnP-Ru-P2H triad, we show that both porphyrins’ fluorescence are highly quenched independent of the redox state of the ruthenium bridge owing to the efficient photoinduced charge transfer within the ruthenium complex. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14779226
Volume :
47
Issue :
25
Database :
Complementary Index
Journal :
Dalton Transactions: An International Journal of Inorganic Chemistry
Publication Type :
Academic Journal
Accession number :
130333403
Full Text :
https://doi.org/10.1039/c8dt01493k