Recombination mechanisms of luminescence type gas sensors
M. Poeplau, S. Ester, B. Henning, T. Wagner, Physical Chemistry Chemical Physics (2020).
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Journal Article
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| English
Author
Poeplau, Michael;
Ester, Stephan;
Henning, BerndLibreCat;
Wagner, Thorsten
Department
Abstract
<p>The impact of the recombination mechanisms in luminescent materials is discussed with regard to luminescence based gas-sensing applications and the use of semiconducting materials, as an alternative to organic–metal complexes, is outlined.</p>
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Physical Chemistry Chemical Physics
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Poeplau M, Ester S, Henning B, Wagner T. Recombination mechanisms of luminescence type gas sensors. Physical Chemistry Chemical Physics. 2020. doi:10.1039/d0cp02269a
Poeplau, M., Ester, S., Henning, B., & Wagner, T. (2020). Recombination mechanisms of luminescence type gas sensors. Physical Chemistry Chemical Physics. https://doi.org/10.1039/d0cp02269a
@article{Poeplau_Ester_Henning_Wagner_2020, title={Recombination mechanisms of luminescence type gas sensors}, DOI={10.1039/d0cp02269a}, journal={Physical Chemistry Chemical Physics}, author={Poeplau, Michael and Ester, Stephan and Henning, Bernd and Wagner, Thorsten}, year={2020} }
Poeplau, Michael, Stephan Ester, Bernd Henning, and Thorsten Wagner. “Recombination Mechanisms of Luminescence Type Gas Sensors.” Physical Chemistry Chemical Physics, 2020. https://doi.org/10.1039/d0cp02269a.
M. Poeplau, S. Ester, B. Henning, and T. Wagner, “Recombination mechanisms of luminescence type gas sensors,” Physical Chemistry Chemical Physics, 2020.
Poeplau, Michael, et al. “Recombination Mechanisms of Luminescence Type Gas Sensors.” Physical Chemistry Chemical Physics, 2020, doi:10.1039/d0cp02269a.