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Complexation and Separation of Trivalent Actinides and Lanthanides by a Novel DGA Derived from Macrocyclic Crown Ether: Synthesis, Extraction, and Spectroscopic and Density Functional Theory Studies

[Image: see text] A DGA-arm-grafted macrocyclic aza-crown ether ligand (Cr6DGA) was synthesized, and its solvent extraction behavior toward trivalent americium and europium in nitric acid medium was studied. The effects of various parameters such as the contact time, temperature, concentration of th...

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Autores principales: Fan, Yu, Li, Youzhen, Shu, Xi, Wu, Rulei, Chen, Shanyong, Jin, Yongdong, Xu, Chao, Chen, Jing, Huang, Chao, Xia, Chuanqin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7841952/
https://www.ncbi.nlm.nih.gov/pubmed/33521455
http://dx.doi.org/10.1021/acsomega.0c05317
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author Fan, Yu
Li, Youzhen
Shu, Xi
Wu, Rulei
Chen, Shanyong
Jin, Yongdong
Xu, Chao
Chen, Jing
Huang, Chao
Xia, Chuanqin
author_facet Fan, Yu
Li, Youzhen
Shu, Xi
Wu, Rulei
Chen, Shanyong
Jin, Yongdong
Xu, Chao
Chen, Jing
Huang, Chao
Xia, Chuanqin
author_sort Fan, Yu
collection PubMed
description [Image: see text] A DGA-arm-grafted macrocyclic aza-crown ether ligand (Cr6DGA) was synthesized, and its solvent extraction behavior toward trivalent americium and europium in nitric acid medium was studied. The effects of various parameters such as the contact time, temperature, concentration of the extractant, and acidity on the extraction by Cr6DGA were investigated. It was found that in 3 mol/L HNO(3), the SF(Eu/Am) value was about 2. The complexation energies calculated by DFT showed that the Eu(III) complexes were more stable than the corresponding Am(III) complexes in gas, aqueous, and organic phases. Furthermore, the coordination study showed that the metal/ligand ratio of the extracted species was 1:2 by mass spectrometry (MS) analysis. The time-resolved laser-induced fluorescence spectra (TRLFS) further proved that the extracted species contained one water molecule, and so the composition of the extracted complexes may be [EuL(2)NO(3)(H(2)O)](2+) or [EuL(2)(NO(3))(2)(H(2)O)](+). Finally, DFT calculations revealed that [EuL(2)(NO(3))(2)(H(2)O)](+) is a more stable species and the binding energy of Eu(III) with the DGA unit is lower than that with the crown unit.
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spelling pubmed-78419522021-01-29 Complexation and Separation of Trivalent Actinides and Lanthanides by a Novel DGA Derived from Macrocyclic Crown Ether: Synthesis, Extraction, and Spectroscopic and Density Functional Theory Studies Fan, Yu Li, Youzhen Shu, Xi Wu, Rulei Chen, Shanyong Jin, Yongdong Xu, Chao Chen, Jing Huang, Chao Xia, Chuanqin ACS Omega [Image: see text] A DGA-arm-grafted macrocyclic aza-crown ether ligand (Cr6DGA) was synthesized, and its solvent extraction behavior toward trivalent americium and europium in nitric acid medium was studied. The effects of various parameters such as the contact time, temperature, concentration of the extractant, and acidity on the extraction by Cr6DGA were investigated. It was found that in 3 mol/L HNO(3), the SF(Eu/Am) value was about 2. The complexation energies calculated by DFT showed that the Eu(III) complexes were more stable than the corresponding Am(III) complexes in gas, aqueous, and organic phases. Furthermore, the coordination study showed that the metal/ligand ratio of the extracted species was 1:2 by mass spectrometry (MS) analysis. The time-resolved laser-induced fluorescence spectra (TRLFS) further proved that the extracted species contained one water molecule, and so the composition of the extracted complexes may be [EuL(2)NO(3)(H(2)O)](2+) or [EuL(2)(NO(3))(2)(H(2)O)](+). Finally, DFT calculations revealed that [EuL(2)(NO(3))(2)(H(2)O)](+) is a more stable species and the binding energy of Eu(III) with the DGA unit is lower than that with the crown unit. American Chemical Society 2021-01-13 /pmc/articles/PMC7841952/ /pubmed/33521455 http://dx.doi.org/10.1021/acsomega.0c05317 Text en © 2021 The Authors. Published by American Chemical Society This is an open access article published under a Creative Commons Non-Commercial No Derivative Works (CC-BY-NC-ND) Attribution License (http://pubs.acs.org/page/policy/authorchoice_ccbyncnd_termsofuse.html) , which permits copying and redistribution of the article, and creation of adaptations, all for non-commercial purposes.
spellingShingle Fan, Yu
Li, Youzhen
Shu, Xi
Wu, Rulei
Chen, Shanyong
Jin, Yongdong
Xu, Chao
Chen, Jing
Huang, Chao
Xia, Chuanqin
Complexation and Separation of Trivalent Actinides and Lanthanides by a Novel DGA Derived from Macrocyclic Crown Ether: Synthesis, Extraction, and Spectroscopic and Density Functional Theory Studies
title Complexation and Separation of Trivalent Actinides and Lanthanides by a Novel DGA Derived from Macrocyclic Crown Ether: Synthesis, Extraction, and Spectroscopic and Density Functional Theory Studies
title_full Complexation and Separation of Trivalent Actinides and Lanthanides by a Novel DGA Derived from Macrocyclic Crown Ether: Synthesis, Extraction, and Spectroscopic and Density Functional Theory Studies
title_fullStr Complexation and Separation of Trivalent Actinides and Lanthanides by a Novel DGA Derived from Macrocyclic Crown Ether: Synthesis, Extraction, and Spectroscopic and Density Functional Theory Studies
title_full_unstemmed Complexation and Separation of Trivalent Actinides and Lanthanides by a Novel DGA Derived from Macrocyclic Crown Ether: Synthesis, Extraction, and Spectroscopic and Density Functional Theory Studies
title_short Complexation and Separation of Trivalent Actinides and Lanthanides by a Novel DGA Derived from Macrocyclic Crown Ether: Synthesis, Extraction, and Spectroscopic and Density Functional Theory Studies
title_sort complexation and separation of trivalent actinides and lanthanides by a novel dga derived from macrocyclic crown ether: synthesis, extraction, and spectroscopic and density functional theory studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7841952/
https://www.ncbi.nlm.nih.gov/pubmed/33521455
http://dx.doi.org/10.1021/acsomega.0c05317
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