Photophysics of Anionic Bis(4 H ‐imidazolato)Cu I Complexes

GND
1279186429
Zugehörigkeit
Institute of Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany
Seidler, Bianca;
GND
1279185880
ORCID
0000-0002-5328-4778
Zugehörigkeit
Institute of Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany
Tran, Jens H.;
GND
1214890598
Zugehörigkeit
Institute of Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany
Hniopek, Julian;
GND
1279185481
ORCID
0000-0003-3392-2573
Zugehörigkeit
Institute of Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany
Traber, Philipp;
GND
1214845193
Zugehörigkeit
Institute of Inorganic and Analytical Chemistry Friedrich Schiller University Jena Humboldtstr. 8 07743 Jena Germany
Görls, Helmar;
GND
130290882
ORCID
0000-0002-1747-5809
Zugehörigkeit
Institute of Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany
Gräfe, Stefanie;
GND
120748193
Zugehörigkeit
Institute of Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany
Schmitt, Michael;
GND
131701819
Zugehörigkeit
Institute of Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany
Popp, Jürgen;
GND
140397183
ORCID
0000-0003-4989-5207
Zugehörigkeit
Institute of Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany
Schulz, Martin;
GND
131343971
ORCID
0000-0002-2842-3537
Zugehörigkeit
Institute of Physical Chemistry Friedrich Schiller University Jena Helmholtzweg 4 07743 Jena Germany
Dietzek‐Ivanšić, Benjamin

In this paper, the photophysical behavior of four panchromatically absorbing, homoleptic bis(4 H ‐imidazolato)Cu I complexes, with a systematic variation in the electron‐withdrawing properties of the imidazolate ligand, were studied by wavelength‐dependent time‐resolved femtosecond transient absorption spectroscopy. Excitation at 400, 480, and 630 nm populates metal‐to‐ligand charge transfer, intraligand charge transfer, and mixed‐character singlet states. The pump wavelength‐dependent transient absorption data were analyzed by a recently established 2D correlation approach. Data analysis revealed that all excitation conditions yield similar excited‐state dynamics. Key to the excited‐state relaxation is fast, sub‐picosecond pseudo‐Jahn‐Teller distortion, which is accompanied by the relocalization of electron density onto a single ligand from the initially delocalized state at Franck‐Condon geometry. Subsequent intersystem crossing to the triplet manifold is followed by a sub‐100 ps decay to the ground state. The fast, nonradiative decay is rationalized by the low triplet‐state energy as found by DFT calculations, which suggest perspective treatment at the strong coupling limit of the energy gap law.

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