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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >New insights into the selectivity of four 1,10-phenanthroline-derived ligands toward the separation of trivalent actinides and lanthanides: a DFT based comparison study
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New insights into the selectivity of four 1,10-phenanthroline-derived ligands toward the separation of trivalent actinides and lanthanides: a DFT based comparison study

机译:四种1,10-菲咯啉衍生的配体对三价act系元素和镧系元素分离的选择性的新见解:基于DFT的比较研究

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摘要

Although many heterocyclic N-donor ligands have shown excellent competence for separating actinides from lanthanides, an explanation for why some ligands work whereas others fail is very fundamental but greatly needs to be addressed for designing novel and efficient extractants. In this work, we systematically investigated four phenanthroline-derived ligands, DHDIPhen, BQPhen, Ph2-BTPhen and CyMe4-BTPhen, and their coordination geometrical properties and formation reactions with Am(III) and Eu(III) ions by quasi-relativistic density functional theory. The calculated hardness of ligands, which may help to determine their selectivity toward actinides and lanthanides, yielded an order, from the softest to the hardest, as follows: Ph2-BTPhen < CyMe4-BTPhen < BQPhen < DHDIPhen. It shows that the intramolecular hydrogen bonds and size of a ligand cavity are two dominant factors for metal-ion complexation. Natural population analysis (NPA) reveals that the 5d/6d orbitals of Eu/Am accept significantly more electrons than other orbitals, but partial density of states and molecular orbital analysis prove that the d orbitals with more accepted electrons have little contribution to the metal-ligand bonds. The thermodynamic results suggest that ligand protonation does have a great influence on the complexation of ligands with metal ions but does not change the selectivity of ligands toward metal ions. This work can help in-depth understanding the differences of selectivity of various structurally similar ligands and provide more theoretical insights for designing more innovative ligands for Ln/An separation.
机译:尽管许多杂环N供体配体已显示出出色的分离compete系元素和镧系元素的能力,但是对于某些配体为何起作用而另一些配体却失效的解释却是非常基本的,但在设计新型高效萃取剂时,需要大力解决。在这项工作中,我们通过准相对论密度泛函系统地研究了四种菲咯啉衍生的配体DHDIPhen,BQPhen,Ph2-BTPhen和CyMe4-BTPhen,以及它们与Am(III)和Eu(III)离子的配位几何性质和形成反应。理论。计算出的配体硬度可能有助于确定它们对act系元素和镧系元素的选择性,从最软到最硬的顺序如下:Ph2-BTPhen

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