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Theoretical prediction of Am(III)/Eu(III) selectivity to aid the design of actinide-lanthanide separation agents

机译:Am(III)/ Eu(III)选择性的理论预测,以帮助设计act系元素-镧系元素分离剂

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摘要

Selective extraction of minor actinides from lanthanides is a critical step in the reduction of radiotoxicity of spent nuclear fuels. However, the design of suitable ligands for separating chemically similar 4f- and 5f-block trivalent metal ions poses a significant challenge. First-principles calculations should play an important role in the design of new separation agents, but their ability to predict metal ion selectivity has not been systematically evaluated. In this work, we examine the ability of several density functional theory methods to predict selectivity of Am(III) and Eu(III) with oxygen, mixed oxygen-nitrogen, and sulfur donor ligands. The results establish a computational method capable of predicting the correct order of selectivities obtained from liquid-liquid extraction and aqueous phase complexation studies. To allow reasonably accurate predictions, it was critical to employ sufficiently flexible basis sets and provide proper account of solvation effects. The approach is utilized to estimate the selectivity of novel amide-functionalized diazine and 1,2,3-triazole ligands.
机译:从镧系元素中选择性萃取次要act系元素是减少乏核燃料放射毒性的关键步骤。然而,用于分离化学上相似的4f-和5f-嵌段三价金属离子的合适配体的设计提出了重大挑战。第一性原理计算应在新分离剂的设计中发挥重要作用,但尚未预测其预测金属离子选择性的能力。在这项工作中,我们检查了几种密度泛函理论方法预测Am(III)和Eu(III)与氧气,混合氧-氮和硫供体配体的选择性的能力。结果建立了一种能够预测从液-液萃取和水相络合研究中获得的选择性的正确顺序的计算方法。为了进行合理准确的预测,使用足够灵活的基础集并提供适当的溶剂化影响至关重要。该方法用于估计新型酰胺官能化的二嗪和1,2,3-三唑配体的选择性。

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