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Structural and spectroscopic studies of spontaneously formed crystalline Eu(iii)–aliphatic dicarboxylates at room temperature

Complexation of actinides and lanthanides with carboxylic organic ligands is a critical issue affecting radionuclide migration from deep geological disposal systems of spent nuclear fuel. A series of Eu(iii)–aliphatic dicarboxylate compounds, as chemical analogs of radioactive Am(iii) species, Eu(2)...

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Autores principales: Kim, Hee-Kyung, Lee, Dong Woo, Park, Sojeong, Chang Jung, Euo, Lim, Sang Ho, Cha, Wansik, Cho, Hye-Ryun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8981011/
https://www.ncbi.nlm.nih.gov/pubmed/35425458
http://dx.doi.org/10.1039/d1ra07565a
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author Kim, Hee-Kyung
Lee, Dong Woo
Park, Sojeong
Chang Jung, Euo
Lim, Sang Ho
Cha, Wansik
Cho, Hye-Ryun
author_facet Kim, Hee-Kyung
Lee, Dong Woo
Park, Sojeong
Chang Jung, Euo
Lim, Sang Ho
Cha, Wansik
Cho, Hye-Ryun
author_sort Kim, Hee-Kyung
collection PubMed
description Complexation of actinides and lanthanides with carboxylic organic ligands is a critical issue affecting radionuclide migration from deep geological disposal systems of spent nuclear fuel. A series of Eu(iii)–aliphatic dicarboxylate compounds, as chemical analogs of radioactive Am(iii) species, Eu(2)(Ox)(3)(H(2)O)(6), Eu(2)(Mal)(3)(H(2)O)(6), and Eu(2)(Suc)(3)(H(2)O)(2), were synthesized and characterized using X-ray crystallography and time-resolved laser fluorescence spectroscopy to examine the ligand-dependent binding modes and the corresponding changes in spectroscopic properties. Powder X-ray crystallography results confirmed that all of the compounds presented a crystalline polymer structure with a trigonal prism square-face tricapped polyhedron geometry centered on Eu(iii) in a nine-coordinate environment involving nine oxygen atoms. This study captures the transition of the coordination modes of aliphatic dicarboxylate ligands from side-on to end-on binding as the carbon chain length increases. This transition is illustrated in malonate bindings involving a combination of side-on and end-on modes. Strongly enhanced luminescence, especially for the hypersensitive peak, indicates a low site symmetry in the formation of solid compounds. The number of remaining bound water molecules was estimated from the resultant increased luminescence lifetimes, which were in good agreement with crystal structures. The excitation–emission matrix spectra of these crystalline polymers suggest that Ox ligands promote the sensitized luminescence of Eu(iii), especially in the UV region. In the case of Mal and Suc ligands, charge transfer occurs in the opposite direction from Eu(iii) to the ligands under UV excitation, resulting in weaker luminescence.
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spelling pubmed-89810112022-04-13 Structural and spectroscopic studies of spontaneously formed crystalline Eu(iii)–aliphatic dicarboxylates at room temperature Kim, Hee-Kyung Lee, Dong Woo Park, Sojeong Chang Jung, Euo Lim, Sang Ho Cha, Wansik Cho, Hye-Ryun RSC Adv Chemistry Complexation of actinides and lanthanides with carboxylic organic ligands is a critical issue affecting radionuclide migration from deep geological disposal systems of spent nuclear fuel. A series of Eu(iii)–aliphatic dicarboxylate compounds, as chemical analogs of radioactive Am(iii) species, Eu(2)(Ox)(3)(H(2)O)(6), Eu(2)(Mal)(3)(H(2)O)(6), and Eu(2)(Suc)(3)(H(2)O)(2), were synthesized and characterized using X-ray crystallography and time-resolved laser fluorescence spectroscopy to examine the ligand-dependent binding modes and the corresponding changes in spectroscopic properties. Powder X-ray crystallography results confirmed that all of the compounds presented a crystalline polymer structure with a trigonal prism square-face tricapped polyhedron geometry centered on Eu(iii) in a nine-coordinate environment involving nine oxygen atoms. This study captures the transition of the coordination modes of aliphatic dicarboxylate ligands from side-on to end-on binding as the carbon chain length increases. This transition is illustrated in malonate bindings involving a combination of side-on and end-on modes. Strongly enhanced luminescence, especially for the hypersensitive peak, indicates a low site symmetry in the formation of solid compounds. The number of remaining bound water molecules was estimated from the resultant increased luminescence lifetimes, which were in good agreement with crystal structures. The excitation–emission matrix spectra of these crystalline polymers suggest that Ox ligands promote the sensitized luminescence of Eu(iii), especially in the UV region. In the case of Mal and Suc ligands, charge transfer occurs in the opposite direction from Eu(iii) to the ligands under UV excitation, resulting in weaker luminescence. The Royal Society of Chemistry 2022-01-31 /pmc/articles/PMC8981011/ /pubmed/35425458 http://dx.doi.org/10.1039/d1ra07565a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Kim, Hee-Kyung
Lee, Dong Woo
Park, Sojeong
Chang Jung, Euo
Lim, Sang Ho
Cha, Wansik
Cho, Hye-Ryun
Structural and spectroscopic studies of spontaneously formed crystalline Eu(iii)–aliphatic dicarboxylates at room temperature
title Structural and spectroscopic studies of spontaneously formed crystalline Eu(iii)–aliphatic dicarboxylates at room temperature
title_full Structural and spectroscopic studies of spontaneously formed crystalline Eu(iii)–aliphatic dicarboxylates at room temperature
title_fullStr Structural and spectroscopic studies of spontaneously formed crystalline Eu(iii)–aliphatic dicarboxylates at room temperature
title_full_unstemmed Structural and spectroscopic studies of spontaneously formed crystalline Eu(iii)–aliphatic dicarboxylates at room temperature
title_short Structural and spectroscopic studies of spontaneously formed crystalline Eu(iii)–aliphatic dicarboxylates at room temperature
title_sort structural and spectroscopic studies of spontaneously formed crystalline eu(iii)–aliphatic dicarboxylates at room temperature
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8981011/
https://www.ncbi.nlm.nih.gov/pubmed/35425458
http://dx.doi.org/10.1039/d1ra07565a
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