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用于三价锕系和镧系元素分离的下一代萃取剂的计算辅助开发

Computation-Aided Development of Next-Generation Extractants for Trivalent Actinide and Lanthanide Separation.

作者信息

Yang Xiaofan, Fang Dong, Chen Linjia, Liu Yaoyang, Wang Shihui, Xu Lei, Zhang Anyun, Su Jing, Xu Chao, Xiao Chengliang

机构信息

College of Chemical and Biological Engineering, Zhejiang University, Hangzhou 310058, China.

Institute of Zhejiang University-Quzhou, Quzhou 324000, China.

出版信息

JACS Au. 2024 Sep 23;4(12):4744-4756. doi: 10.1021/jacsau.4c00684. eCollection 2024 Dec 23.

Abstract

The chemical similarities between trivalent actinides [An(III)] and lanthanides [Ln(III)] present a significant challenge in differentiating and separating them, which is a key step toward closing the nuclear fuel cycle. However, the existing separation approaches commonly suffer from demerits such as inadequate separation factors, limited stripping efficiency, and undesired coextraction. In this study, a novel unsymmetrical phenanthroline-derived amide-triazine (Et-Tol-CyMe-ATPhen) extractant was first designed and then screened with theoretical computation. Meanwhile, they were successfully synthesized by using a construction method. As expected, Et-Tol-CyMe-ATPhen exhibited a favorable extraction ability for Am(III) and minimal extraction for Ln(III), thereby achieving an extremely selective An(III)/Ln(III) separation with a separation factor of over 280. Furthermore, Am(III) could be easily and effectively stripped from the loaded phases using dilute nitric acid. The underlying coordination mechanisms were thoroughly elucidated by using H NMR, ESI-MS, UV-vis absorption spectrometry, photoluminescence spectrometry, and single-crystal X-ray diffraction. This work holds promise for addressing the current challenges in An(III)/Ln(III) separation and represents a pioneering endeavor in developing next-generation extractants from first-principles calculation.

摘要

三价锕系元素[An(III)]和镧系元素[Ln(III)]之间的化学相似性给它们的区分和分离带来了重大挑战,而这是实现核燃料循环闭合的关键一步。然而,现有的分离方法通常存在分离系数不足、反萃效率有限以及不期望的共萃取等缺点。在本研究中,首先设计了一种新型的不对称菲咯啉衍生的酰胺 - 三嗪(Et-Tol-CyMe-ATPhen)萃取剂,然后通过理论计算进行筛选。同时,采用一种构建方法成功合成了它们。正如预期的那样,Et-Tol-CyMe-ATPhen对Am(III)表现出良好的萃取能力,而对Ln(III)的萃取极少,从而实现了极高选择性的An(III)/Ln(III)分离,分离系数超过280。此外,使用稀硝酸可以轻松有效地从负载相中反萃出Am(III)。通过¹H NMR、ESI-MS、紫外 - 可见吸收光谱、光致发光光谱和单晶X射线衍射全面阐明了潜在的配位机制。这项工作有望解决当前An(III)/Ln(III)分离中的挑战,并代表了从第一性原理计算开发下一代萃取剂的开创性努力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4eb/11672149/2d716ff7127b/au4c00684_0001.jpg

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