Literature DB >> 31436978

Structural and Stability Trends of the Complexation of Hexavalent Actinides with Two Dipicolinic Acid Derivatives: An Experimental and Theoretical Study.

Pingping Wei1, Ning Pu1, Xue Dong1, Jianhua Yuan1, Youzhen Li1, Lei Xu1, Jing Chen1, Chao Xu1.   

Abstract

Revealing the complexation behavior of high-valent actinides in solutions is of great importance to better understand the fundamental chemistry of actinides as well as to control the separation property of actinides in nuclear fuel cycles. In this work, the complexation of hexavalent actinide cations U(VI), Np(VI), and Pu(VI) with two dipicolinic acid derivatives, 6-(dimethylcarbamoyl)picolinic acid (DMAPA, denoted as HL) and N2,N2,N6,N6-tetramethylpyridine-2,6-dicarboxamide (TMPDA), in aqueous solutions were investigated by absorption spectrophotometry, X-ray crystallography, and DFT calculations. Formation of 1/1 and 1/2 (metal:ligand) complexes of U(VI), Np(VI), and Pu(VI) with DMAPA were identified and the corresponding stability constants were determined. The binding strengths of the three hexavalent actinide cations with DMAPA follow the order of U(VI) > Np(VI) > Pu(VI) in both 1/1 and 1/2 complexes, indicating that the driving force for the complexation is mainly electrostatic interactions. In addition, the relationships between the features of the absorption spectra and the symmetry of Pu(VI) and Np(VI) complexes with DMAPA have been established. The crystal structure of the 1/2 U(VI)/DMAPA complex as well as the DFT optimized structures of An(VI)/DMAPA complexes shed additional light on the structural characters of the hexavalent actinide cation complexes. In contrast to DMAPA, TMPDA exhibits no observable complexation with the three hexavalent actinide cations in aqueous solution, which could be attributed to low electron density on the donor atoms of TMPDA as well as steric hindrance effect by dimethyl carbamoyl groups as elucidated by DFT calculations. The results from this work provide new insights into the complexation trends of hexavalent actinide cations in aqueous solutions.

Entities:  

Year:  2019        PMID: 31436978     DOI: 10.1021/acs.inorgchem.9b01629

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  2 in total

1.  Ligand-Induced U Mobilization from Chemogenic Uraninite and Biogenic Noncrystalline U(IV) under Anoxic Conditions.

Authors:  Kyle J Chardi; Anshuman Satpathy; Walter D C Schenkeveld; Naresh Kumar; Vincent Noël; Stephan M Kraemer; Daniel E Giammar
Journal:  Environ Sci Technol       Date:  2022-05-06       Impact factor: 11.357

2.  Theoretical prediction of a graphene-like 2D uranyl material with p-orbital antiferromagnetism.

Authors:  Xiao-Kun Zhao; Chang-Su Cao; Jin-Cheng Liu; Jun-Bo Lu; Jun Li; Han-Shi Hu
Journal:  Chem Sci       Date:  2022-05-26       Impact factor: 9.969

  2 in total

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