Rhenium tricarbonyl complexes with arenethiolate axial ligands

Due to their unique electronic and photophysical properties, rhenium( i ) fac -tricarbonyl complexes of general formula [Re(N^N)(CO) 3 X] n+ have been arousing constant interest in many diverse fields and applications, such as CO 2 (photo)electroreduction, organic light emitting diodes and materials...

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Veröffentlicht in:New journal of chemistry 2018, Vol.42 (14), p.11312-11323
Hauptverfasser: He, Menglan, Ching, H. Y. Vincent, Policar, Clotilde, Bertrand, Helene C.
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container_issue 14
container_start_page 11312
container_title New journal of chemistry
container_volume 42
creator He, Menglan
Ching, H. Y. Vincent
Policar, Clotilde
Bertrand, Helene C.
description Due to their unique electronic and photophysical properties, rhenium( i ) fac -tricarbonyl complexes of general formula [Re(N^N)(CO) 3 X] n+ have been arousing constant interest in many diverse fields and applications, such as CO 2 (photo)electroreduction, organic light emitting diodes and materials, sensors, biological applications and bio-imaging. The photophysical properties of [Re(N^N)(CO) 3 X] n+ complexes can be modulated by structural variations of the ligands. Modifications of the N^N diimine ligand and of the axial X ligand have been deeply investigated. However, thiolate ligands have scarcely been used in the synthesis of rhenium tricarbonyl complexes. We describe the synthesis of a series of Pyta and Tapy-based Re( i ) fac -tricarbonyl complexes with diversely para -substituted arenethiolates in the coordination sphere and report on the electrochemical, photophysical properties and DFT studies of such complexes.
doi_str_mv 10.1039/C8NJ01960F
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source Royal Society Of Chemistry Journals 2008-; Alma/SFX Local Collection
subjects Biological materials
Chemical Sciences
Coordination compounds
Inorganic chemistry
Ligands
Organic light emitting diodes
Properties (attributes)
Rhenium
Synthesis
title Rhenium tricarbonyl complexes with arenethiolate axial ligands
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