Issue 1, 2024

Pyrene fluorescence in 2,7-di(4-phenylethynyl)pyrene-bridged bis(alkenylruthenium) complexes

Abstract

Complexes PyrDPE-RuCl and PyrDPE-Ruacac with a π-extended 2,7-di(4-phenylethynyl)pyrene linker undergo simultaneous one-electron oxidations of their {Ru}-styryl entities. The absence of an intervalence charge-transfer (IVCT) band at intermediate stages, where the mixed-valent, singly oxidized radical cation is present, and spin density confinement to the terminal styryl ruthenium site(s) are tokens of a lack of electronic coupling between the {Ru} entities across the π-conjugated linker. The close similarity of the linker-based π → π* bands in the complexes and the free ligand and their insensitivity towards oxidations at the terminal sites indicate that the central pyrenyl fluorophore is electronically decoupled from the electron-rich {Ru}-styryl termini. As a consequence, the complexes offer stable pyrene-based fluorescence emissions at 77 K, which are red-shifted from that of the linker.

Graphical abstract: Pyrene fluorescence in 2,7-di(4-phenylethynyl)pyrene-bridged bis(alkenylruthenium) complexes

Supplementary files

Article information

Article type
Paper
Submitted
22 Sep 2023
Accepted
24 Nov 2023
First published
27 Nov 2023
This article is Open Access
Creative Commons BY-NC license

Dalton Trans., 2024,53, 251-259

Pyrene fluorescence in 2,7-di(4-phenylethynyl)pyrene-bridged bis(alkenylruthenium) complexes

F. S. Gogesch, L. Bauer, F. D. Vollstädt, M. Linseis, L. Senft, I. Ivanović-Burmazović and R. F. Winter, Dalton Trans., 2024, 53, 251 DOI: 10.1039/D3DT03114D

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