Suppr超能文献

深入了解草酸锕系元素(IV)层状结构的结构歧义性:交替配位几何的一个实例

Insight into the Structural Ambiguity of Actinide(IV) Oxalate Sheet Structures: A Case for Alternate Coordination Geometries.

作者信息

Sockwell A Kirstin, Sweet Teagan F M, Barth Brodie, Isbill Sara B, DiBlasi Nicole A, Szymanowski Jennifer E S, Sigmon Ginger E, Oliver Allen G, Miskowiec Andrew J, Burns Peter C, Hixon Amy E

机构信息

Civil & Environmental Engineering & Earth Sciences, University of Notre Dame, Notre Dame, Indiana, 46556, USA.

Department of Chemistry & Biochemistry, University of Notre Dame, Notre Dame, IN 46556, USA.

出版信息

Chemistry. 2023 Aug 21;29(47):e202301164. doi: 10.1002/chem.202301164. Epub 2023 Jul 7.

Abstract

Plutonium(IV) oxalate hexahydrate (Pu(C O )  ⋅ 6 H O; PuOx) is an important intermediate in the recovery of plutonium from used nuclear fuel. Its formation by precipitation is well studied, yet its crystal structure remains unknown. Instead, the crystal structure of PuOx is assumed to be isostructural with neptunium(IV) oxalate hexahydrate (Np(C O )  ⋅ 6 H O; NpOx) and uranium(IV) oxalate hexahydrate (U(C O )  ⋅ 6 H O; UOx) despite the high degree of unresolved disorder that exists when determining water positions in the crystal structures of the latter two compounds. Such assumptions regarding the isostructural behavior of the actinide elements have been used to predict the structure of PuOx for use in a wide range of studies. Herein, we report the first crystal structures for PuOx and Th(C O )  ⋅ 6 H O (ThOx). These data, along with new characterization of UOx and NpOx, have resulted in the full determination of the structures and resolution of the disorder around the water molecules. Specifically, we have identified the coordination of two water molecules with each metal center, which necessitates a change in oxalate coordination mode from axial to equatorial that has not been reported in the literature. The results of this work exemplify the need to revisit previous assumptions regarding fundamental actinide chemistry, which are heavily relied upon within the current nuclear field.

摘要

草酸钚(IV)六水合物(Pu(C₂O₄)₂ ⋅ 6H₂O;PuOx)是从乏核燃料中回收钚的重要中间体。通过沉淀法形成该化合物的过程已得到充分研究,但其晶体结构仍然未知。相反,尽管在确定后两种化合物的晶体结构中的水位置时存在高度未解决的无序情况,但人们认为PuOx的晶体结构与六水合草酸镎(IV)(Np(C₂O₄)₂ ⋅ 6H₂O;NpOx)和六水合草酸铀(IV)(U(C₂O₄)₂ ⋅ 6H₂O;UOx)同构。关于锕系元素同构行为的此类假设已被用于预测PuOx的结构,以用于广泛的研究。在此,我们报告了PuOx和Th(C₂O₄)₂ ⋅ 6H₂O(ThOx)的首个晶体结构。这些数据,连同UOx和NpOx的新表征,已实现了结构的完全确定以及水分子周围无序情况的解析。具体而言,我们确定了每个金属中心与两个水分子的配位情况,这需要草酸根的配位模式从轴向变为赤道向,而这在文献中尚未有报道。这项工作的结果表明有必要重新审视先前关于基本锕系元素化学的假设,而当前核领域对这些假设高度依赖。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验