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Interdisciplinary Round-Robin Test on Molecular Spectroscopy of the U(VI) Acetate System

[Image: see text] A comprehensive molecular analysis of a simple aqueous complexing system—U(VI) acetate—selected to be independently investigated by various spectroscopic (vibrational, luminescence, X-ray absorption, and nuclear magnetic resonance spectroscopy) and quantum chemical methods was achi...

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Autores principales: Müller, Katharina, Foerstendorf, Harald, Steudtner, Robin, Tsushima, Satoru, Kumke, Michael U., Lefèvre, Grégory, Rothe, Jörg, Mason, Harris, Szabó, Zoltán, Yang, Ping, Adam, Christian K. R., André, Rémi, Brennenstuhl, Katlen, Chiorescu, Ion, Cho, Herman M., Creff, Gaëlle, Coppin, Frédéric, Dardenne, Kathy, Den Auwer, Christophe, Drobot, Björn, Eidner, Sascha, Hess, Nancy J., Kaden, Peter, Kremleva, Alena, Kretzschmar, Jerome, Krüger, Sven, Platts, James A., Panak, Petra J., Polly, Robert, Powell, Brian A., Rabung, Thomas, Redon, Roland, Reiller, Pascal E., Rösch, Notker, Rossberg, André, Scheinost, Andreas C., Schimmelpfennig, Bernd, Schreckenbach, Georg, Skerencak-Frech, Andrej, Sladkov, Vladimir, Solari, Pier Lorenzo, Wang, Zheming, Washton, Nancy M., Zhang, Xiaobin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6648335/
https://www.ncbi.nlm.nih.gov/pubmed/31459906
http://dx.doi.org/10.1021/acsomega.9b00164
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author Müller, Katharina
Foerstendorf, Harald
Steudtner, Robin
Tsushima, Satoru
Kumke, Michael U.
Lefèvre, Grégory
Rothe, Jörg
Mason, Harris
Szabó, Zoltán
Yang, Ping
Adam, Christian K. R.
André, Rémi
Brennenstuhl, Katlen
Chiorescu, Ion
Cho, Herman M.
Creff, Gaëlle
Coppin, Frédéric
Dardenne, Kathy
Den Auwer, Christophe
Drobot, Björn
Eidner, Sascha
Hess, Nancy J.
Kaden, Peter
Kremleva, Alena
Kretzschmar, Jerome
Krüger, Sven
Platts, James A.
Panak, Petra J.
Polly, Robert
Powell, Brian A.
Rabung, Thomas
Redon, Roland
Reiller, Pascal E.
Rösch, Notker
Rossberg, André
Scheinost, Andreas C.
Schimmelpfennig, Bernd
Schreckenbach, Georg
Skerencak-Frech, Andrej
Sladkov, Vladimir
Solari, Pier Lorenzo
Wang, Zheming
Washton, Nancy M.
Zhang, Xiaobin
author_facet Müller, Katharina
Foerstendorf, Harald
Steudtner, Robin
Tsushima, Satoru
Kumke, Michael U.
Lefèvre, Grégory
Rothe, Jörg
Mason, Harris
Szabó, Zoltán
Yang, Ping
Adam, Christian K. R.
André, Rémi
Brennenstuhl, Katlen
Chiorescu, Ion
Cho, Herman M.
Creff, Gaëlle
Coppin, Frédéric
Dardenne, Kathy
Den Auwer, Christophe
Drobot, Björn
Eidner, Sascha
Hess, Nancy J.
Kaden, Peter
Kremleva, Alena
Kretzschmar, Jerome
Krüger, Sven
Platts, James A.
Panak, Petra J.
Polly, Robert
Powell, Brian A.
Rabung, Thomas
Redon, Roland
Reiller, Pascal E.
Rösch, Notker
Rossberg, André
Scheinost, Andreas C.
Schimmelpfennig, Bernd
Schreckenbach, Georg
Skerencak-Frech, Andrej
Sladkov, Vladimir
Solari, Pier Lorenzo
Wang, Zheming
Washton, Nancy M.
Zhang, Xiaobin
author_sort Müller, Katharina
collection PubMed
description [Image: see text] A comprehensive molecular analysis of a simple aqueous complexing system—U(VI) acetate—selected to be independently investigated by various spectroscopic (vibrational, luminescence, X-ray absorption, and nuclear magnetic resonance spectroscopy) and quantum chemical methods was achieved by an international round-robin test (RRT). Twenty laboratories from six different countries with a focus on actinide or geochemical research participated and contributed to this scientific endeavor. The outcomes of this RRT were considered on two levels of complexity: first, within each technical discipline, conformities as well as discrepancies of the results and their sources were evaluated. The raw data from the different experimental approaches were found to be generally consistent. In particular, for complex setups such as accelerator-based X-ray absorption spectroscopy, the agreement between the raw data was high. By contrast, luminescence spectroscopic data turned out to be strongly related to the chosen acquisition parameters. Second, the potentials and limitations of coupling various spectroscopic and theoretical approaches for the comprehensive study of actinide molecular complexes were assessed. Previous spectroscopic data from the literature were revised and the benchmark data on the U(VI) acetate system provided an unambiguous molecular interpretation based on the correlation of spectroscopic and theoretical results. The multimethodologic approach and the conclusions drawn address not only important aspects of actinide spectroscopy but particularly general aspects of modern molecular analytical chemistry.
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spelling pubmed-66483352019-08-27 Interdisciplinary Round-Robin Test on Molecular Spectroscopy of the U(VI) Acetate System Müller, Katharina Foerstendorf, Harald Steudtner, Robin Tsushima, Satoru Kumke, Michael U. Lefèvre, Grégory Rothe, Jörg Mason, Harris Szabó, Zoltán Yang, Ping Adam, Christian K. R. André, Rémi Brennenstuhl, Katlen Chiorescu, Ion Cho, Herman M. Creff, Gaëlle Coppin, Frédéric Dardenne, Kathy Den Auwer, Christophe Drobot, Björn Eidner, Sascha Hess, Nancy J. Kaden, Peter Kremleva, Alena Kretzschmar, Jerome Krüger, Sven Platts, James A. Panak, Petra J. Polly, Robert Powell, Brian A. Rabung, Thomas Redon, Roland Reiller, Pascal E. Rösch, Notker Rossberg, André Scheinost, Andreas C. Schimmelpfennig, Bernd Schreckenbach, Georg Skerencak-Frech, Andrej Sladkov, Vladimir Solari, Pier Lorenzo Wang, Zheming Washton, Nancy M. Zhang, Xiaobin ACS Omega [Image: see text] A comprehensive molecular analysis of a simple aqueous complexing system—U(VI) acetate—selected to be independently investigated by various spectroscopic (vibrational, luminescence, X-ray absorption, and nuclear magnetic resonance spectroscopy) and quantum chemical methods was achieved by an international round-robin test (RRT). Twenty laboratories from six different countries with a focus on actinide or geochemical research participated and contributed to this scientific endeavor. The outcomes of this RRT were considered on two levels of complexity: first, within each technical discipline, conformities as well as discrepancies of the results and their sources were evaluated. The raw data from the different experimental approaches were found to be generally consistent. In particular, for complex setups such as accelerator-based X-ray absorption spectroscopy, the agreement between the raw data was high. By contrast, luminescence spectroscopic data turned out to be strongly related to the chosen acquisition parameters. Second, the potentials and limitations of coupling various spectroscopic and theoretical approaches for the comprehensive study of actinide molecular complexes were assessed. Previous spectroscopic data from the literature were revised and the benchmark data on the U(VI) acetate system provided an unambiguous molecular interpretation based on the correlation of spectroscopic and theoretical results. The multimethodologic approach and the conclusions drawn address not only important aspects of actinide spectroscopy but particularly general aspects of modern molecular analytical chemistry. American Chemical Society 2019-05-03 /pmc/articles/PMC6648335/ /pubmed/31459906 http://dx.doi.org/10.1021/acsomega.9b00164 Text en Copyright © 2019 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Müller, Katharina
Foerstendorf, Harald
Steudtner, Robin
Tsushima, Satoru
Kumke, Michael U.
Lefèvre, Grégory
Rothe, Jörg
Mason, Harris
Szabó, Zoltán
Yang, Ping
Adam, Christian K. R.
André, Rémi
Brennenstuhl, Katlen
Chiorescu, Ion
Cho, Herman M.
Creff, Gaëlle
Coppin, Frédéric
Dardenne, Kathy
Den Auwer, Christophe
Drobot, Björn
Eidner, Sascha
Hess, Nancy J.
Kaden, Peter
Kremleva, Alena
Kretzschmar, Jerome
Krüger, Sven
Platts, James A.
Panak, Petra J.
Polly, Robert
Powell, Brian A.
Rabung, Thomas
Redon, Roland
Reiller, Pascal E.
Rösch, Notker
Rossberg, André
Scheinost, Andreas C.
Schimmelpfennig, Bernd
Schreckenbach, Georg
Skerencak-Frech, Andrej
Sladkov, Vladimir
Solari, Pier Lorenzo
Wang, Zheming
Washton, Nancy M.
Zhang, Xiaobin
Interdisciplinary Round-Robin Test on Molecular Spectroscopy of the U(VI) Acetate System
title Interdisciplinary Round-Robin Test on Molecular Spectroscopy of the U(VI) Acetate System
title_full Interdisciplinary Round-Robin Test on Molecular Spectroscopy of the U(VI) Acetate System
title_fullStr Interdisciplinary Round-Robin Test on Molecular Spectroscopy of the U(VI) Acetate System
title_full_unstemmed Interdisciplinary Round-Robin Test on Molecular Spectroscopy of the U(VI) Acetate System
title_short Interdisciplinary Round-Robin Test on Molecular Spectroscopy of the U(VI) Acetate System
title_sort interdisciplinary round-robin test on molecular spectroscopy of the u(vi) acetate system
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6648335/
https://www.ncbi.nlm.nih.gov/pubmed/31459906
http://dx.doi.org/10.1021/acsomega.9b00164
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