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Strongly Red-Emissive Molecular Ruby [Cr(bpmp)2]3+ Surpasses [Ru(bpy)3]2+

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2021

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Reichenauer, Florian
Förster, Christoph
Boden, Pit
Ugur, Naz
Báez-Cruz, Ricardo
Kalmbach, Jens
Seitz, Michael
Resch-Genger, Ute
Heinze, Katja
et al.

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Deutsche Forschungsgemeinschaft (DFG): GE 961/10-1
Deutsche Forschungsgemeinschaft (DFG): HE 2778/15-1
Deutsche Forschungsgemeinschaft (DFG): RE 1203/23-1
Deutsche Forschungsgemeinschaft (DFG): SE 1448/8-1

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Journal of the American Chemical Society. American Chemical Society (ACS). 2021, 143(30), S. 11843-11855. ISSN 0002-7863. eISSN 1520-5126. Verfügbar unter: doi: 10.1021/jacs.1c05971

Zusammenfassung

Gaining chemical control over the thermodynamics and kinetics of photoexcited states is paramount to an efficient and sustainable utilization of photoactive transition metal complexes in a plethora of technologies. In contrast to energies of charge transfer states described by spatially separated orbitals, the energies of spin-flip states cannot straightforwardly be predicted as Pauli repulsion and the nephelauxetic effect play key roles. Guided by multireference quantum chemical calculations, we report a novel highly luminescent spin-flip emitter with a quantum chemically predicted blue-shifted luminescence. The spin-flip emission band of the chromium complex [Cr(bpmp)2]3+ (bpmp = 2,6-bis(2-pyridylmethyl)pyridine) shifted to higher energy from ca. 780 nm observed for known highly emissive chromium(III) complexes to 709 nm. The photoluminescence quantum yields climb to 20%, and very long excited state lifetimes in the millisecond range are achieved at room temperature in acidic D2O solution. Partial ligand deuteration increases the quantum yield to 25%. The high excited state energy of [Cr(bpmp)2]3+ and its facile reduction to [Cr(bpmp)2]2+ result in a high excited state redox potential. The ligand’s methylene bridge acts as a Brønsted acid quenching the luminescence at high pH. Combined with a pH-insensitive chromium(III) emitter, ratiometric optical pH sensing is achieved with single wavelength excitation. The photophysical and ground state properties (quantum yield, lifetime, redox potential, and acid/base) of this spin-flip complex incorporating an earth-abundant metal surpass those of the classical precious metal [Ru(α-diimine)3]2+ charge transfer complexes, which are commonly employed in optical sensing and photo(redox) catalysis, underlining the bright future of these molecular ruby analogues.

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Fachgebiet (DDC)
540 Chemie

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Energy, Excited states, Ligands, Luminescence, Quantum yield

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ISO 690REICHENAUER, Florian, Cui WANG, Christoph FÖRSTER, Pit BODEN, Naz UGUR, Ricardo BÁEZ-CRUZ, Jens KALMBACH, Michael SEITZ, Ute RESCH-GENGER, Katja HEINZE, 2021. Strongly Red-Emissive Molecular Ruby [Cr(bpmp)2]3+ Surpasses [Ru(bpy)3]2+. In: Journal of the American Chemical Society. American Chemical Society (ACS). 2021, 143(30), S. 11843-11855. ISSN 0002-7863. eISSN 1520-5126. Verfügbar unter: doi: 10.1021/jacs.1c05971
BibTex
@article{Reichenauer2021-08-04Stron-74255,
  title={Strongly Red-Emissive Molecular Ruby [Cr(bpmp)<sub>2</sub>]<sup>3+</sup> Surpasses [Ru(bpy)<sub>3</sub>]<sup>2+</sup>},
  year={2021},
  doi={10.1021/jacs.1c05971},
  number={30},
  volume={143},
  issn={0002-7863},
  journal={Journal of the American Chemical Society},
  pages={11843--11855},
  author={Reichenauer, Florian and Wang, Cui and Förster, Christoph and Boden, Pit and Ugur, Naz and Báez-Cruz, Ricardo and Kalmbach, Jens and Seitz, Michael and Resch-Genger, Ute and Heinze, Katja}
}
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