Andreas Hirsch's research while affiliated with Friedrich-Alexander-University of Erlangen-Nürnberg and other places

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Publications (1)


Elucidating the Ultrafast Dynamics of Photoinduced Charge Separation in Metalloporphyrin-Fullerene Dyads Across the Electromagnetic Spectrum
  • Article

August 2016

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49 Reads

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6 Citations

The Journal of Physical Chemistry C

Jianxin Zhang

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Andreas Hirsch

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Metalloporphyrins are prominent building blocks in the synthetic toolbox of advanced photodriven molecular devices. When the central ion is paramagnetic, the relaxation pathways within the manifold of excited states are highly intricate so that unravelling the intramolecular energy and electron transfer processes is usually a very complex task. This fact is critically hampering the development of applications based on the enhanced coupling offered by the electronic exchange interaction. In this work, the dynamics of charge separation in a copper porphyrin-fullerene are studied with several complementary spectroscopic tools across the electromagnetic spectrum (from near-infrared to X-ray wavelengths), each of them providing specific diagnostics. Correlating the various rates clearly demonstrates that the lifetime of the photoinduced charge-separated state exceeds by about 10-fold that of the isolated photoexcited CuII porphyrin. As revealed by the spectral modifications in the XANES region, this stabilization is accompanied by a transient change in covalency around the CuII center, which is induced by an enhanced interaction with the C60 moiety. This experimental finding is further confirmed by state-of-the art calculations using DFT and TD-DFT including dispersion effects that explain the electrostatic and structural origins of this interaction, as the CuIIP cation becomes ruffled and approaches closer to the fullerene in the charge-separated state. From a methodological point of view, these results exemplify the potential of multielectron excitation features in transient X-ray spectra as future diagnostics of subfemtosecond electronic dynamics. From a practical point of view, this work is paving the way for elucidating out-of-equilibrium electron transfer events coupled to magnetic interaction processes on their intrinsic time-scales.

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Citations (1)


... Copper K-edge HERFD-XAS spectra (collected at 10 K to avoid signi cant photoreduction of the sample, Supplementary information) of samples trapped at 100 and 380 ms, and subsequent annealing through a temperature range of 150 to 250 K, revealed in all cases an edge position at 8985.8(3) eV, consistent with a sample that is principally in the Cu II oxidation state 19 . An intense rising-edge feature at 8981.9 (3) eV is also observed, likely to be either a Cu II shakedown transition often observed in the K-edge XANES spectra of Cu II species 27 , or a 1s-4p transition that is observed in the equivalent Cu I form of the enzyme at the same position, which could arise from partial photoreduction of the sample 19 . In the samples trapped at 100 ms, which had been annealed to 150 K and 250 K, two weak pre-edge features at 8977.7(3) eV and 8979.2(3) ...

Reference:

The histidine-brace active site of a copper monooxygenase is redox active and forms part of an in-built enzyme repair mechanism
Elucidating the Ultrafast Dynamics of Photoinduced Charge Separation in Metalloporphyrin-Fullerene Dyads Across the Electromagnetic Spectrum
  • Citing Article
  • August 2016

The Journal of Physical Chemistry C