Publikation: Rapid-scan electron paramagnetic resonance spectroscopy of nitroxide based spin systems
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2025
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European Union (EU): 772027- SPICE-ERC-2017-COG
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Physical Chemistry Chemical Physics. Royal Society of Chemistry (RSC). 2025, 27(32), S. 16708-16716. ISSN 1463-9076. eISSN 1463-9084. Verfügbar unter: doi: 10.1039/d5cp00990a
Zusammenfassung
Rapid-scan (RS) electron paramagnetic resonance (EPR) spectroscopy combined with site-directed spin-labeling (SDSL) is a powerful tool for investigating fast kinetics on biologically relevant timescales. This article provides an overview of the technique, highlighting the utility of nitroxide-based spin-labels and probes. Recent technical and methodological progress demonstrating the applicability of RS EPR is illustrated through examples in the field of chemical biology.
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540 Chemie
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JOHANNSEN, Florian, Malte DRESCHER, 2025. Rapid-scan electron paramagnetic resonance spectroscopy of nitroxide based spin systems. In: Physical Chemistry Chemical Physics. Royal Society of Chemistry (RSC). 2025, 27(32), S. 16708-16716. ISSN 1463-9076. eISSN 1463-9084. Verfügbar unter: doi: 10.1039/d5cp00990aBibTex
@article{Johannsen2025Rapid-74700,
title={Rapid-scan electron paramagnetic resonance spectroscopy of nitroxide based spin systems},
year={2025},
doi={10.1039/d5cp00990a},
number={32},
volume={27},
issn={1463-9076},
journal={Physical Chemistry Chemical Physics},
pages={16708--16716},
author={Johannsen, Florian and Drescher, Malte}
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<dcterms:abstract>Rapid-scan (RS) electron paramagnetic resonance (EPR) spectroscopy combined with site-directed spin-labeling (SDSL) is a powerful tool for investigating fast kinetics on biologically relevant timescales. This article provides an overview of the technique, highlighting the utility of nitroxide-based spin-labels and probes. Recent technical and methodological progress demonstrating the applicability of RS EPR is illustrated through examples in the field of chemical biology.</dcterms:abstract>
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