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Temperature-jump QCL spectroscopy of peptide dynamics : expanding spectral accessibility by dual-combs

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2025

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Deutsche Forschungsgemeinschaft (DFG): 564132680
Deutsche Forschungsgemeinschaft (DFG): CRC 969
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Chemical Communications (ChemComm). Royal Society of Chemistry (RSC). 2025, 61(96), S. 19024-19027. ISSN 1359-7345. eISSN 1364-548X. Verfügbar unter: doi: 10.1039/d5cc04629g

Zusammenfassung

Combining infrared dual-comb spectroscopy with laser-induced nanosecond temperature-jumps enables fast tracking of peptide folding dynamics. Compared to single-wavenumber quantum cascade lasers, this method provides broader spectral information. Using a model peptide system, the study opens new perspectives for applying time-resolved IR spectroscopy to explore mechanistic details in biomolecular dynamics.

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540 Chemie

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ISO 690MATTES, Lorenz, Manuel OESTRINGER, Paul STRITT, Raphael HORVATH, Andreas HUGI, Karin HAUSER, 2025. Temperature-jump QCL spectroscopy of peptide dynamics : expanding spectral accessibility by dual-combs. In: Chemical Communications (ChemComm). Royal Society of Chemistry (RSC). 2025, 61(96), S. 19024-19027. ISSN 1359-7345. eISSN 1364-548X. Verfügbar unter: doi: 10.1039/d5cc04629g
BibTex
@article{Mattes2025Tempe-75298,
  title={Temperature-jump QCL spectroscopy of peptide dynamics : expanding spectral accessibility by dual-combs},
  year={2025},
  doi={10.1039/d5cc04629g},
  number={96},
  volume={61},
  issn={1359-7345},
  journal={Chemical Communications (ChemComm)},
  pages={19024--19027},
  author={Mattes, Lorenz and Oestringer, Manuel and Stritt, Paul and Horvath, Raphael and Hugi, Andreas and Hauser, Karin}
}
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