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超四面体硒代锗酸盐簇的离子选择性组装用于碱金属离子捕获和分离。

Ion-Selective Assembly of Supertetrahedral Selenido Germanate Clusters for Alkali Metal Ion Capture and Separation.

机构信息

Institute of Nanotechnology (INT) and Karlsruhe Nano Micro Facility (KNMF), Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.

Fachbereich Chemie and Wissenschaftliches Zentrum für Materialwissenschaften, Philipps-Universität Marburg, 35043 Marburg, Germany.

出版信息

J Am Chem Soc. 2023 Feb 15;145(6):3802-3811. doi: 10.1021/jacs.2c13523. Epub 2023 Jan 31.

Abstract

Supertetrahedral chalcogenido (semi)metalate cluster-based frameworks possess high selectivity for alkali metal cations, matching the specific charge density of their inner surfaces, which enables their use as ion-exchange materials. Aggregates of the supertetrahedral chalcogenido metalate cluster offer even new perspectives for metal ion capture and separation. Herein, we report on ionothermal preparation of two corresponding model compounds, (CCIm)[Cs@Ge(GeSe)] () and (CCIm)[Na(CN)@Cu(GeSe)(Cu)] (). Their formation is reliant on one specific cation type each, Cs for and Na for , thus providing promising separation potential during crystallization. Compound is based on the largest discrete binary selenido germanate cluster reported to date and the first mixed-valent chalcogenido germanate(II/IV) supertetrahedron. Moreover, it adds to the few examples of chalcogenides capable of capturing Cs ions. Its high selectivity for Cs compared to that of Li, Na, K, and Rb was confirmed by single-crystal X-ray diffraction, energy-dispersive X-ray spectroscopy, and electrospray ionization mass spectrometry. Quantum chemical studies indicate that smaller ions, K and Rb, could also be embedded in an isolated cluster assembly, but as the cluster aggregate slightly distorts for crystallization, the selectivity for Cs becomes exclusive in the salt. The anionic substructure of compound is based on a two-dimensional network of supramolecular assemblies and exhibits an exclusive preference for Na. This work thus provides the first comprehensive insight into the selective incorporation of specific alkali metal ions into supramolecular aggregates of supertetrahedral chalcogenide clusters, as a promising basis for new ion trapping techniques─especially for heavy alkali metal ions that pose environmental challenges.

摘要

超四面体硫属(半)金属酸盐簇基框架对碱金属阳离子具有高选择性,与它们内表面的特定电荷密度相匹配,这使其可用作离子交换材料。超四面体硫属金属酸盐簇的聚集体甚至为金属离子捕获和分离提供了新的视角。在此,我们报告了两种相应模型化合物的离子热合成,(CCIm)Cs@Ge(GeSe)和(CCIm)Na(CN)@Cu(GeSe)(Cu)。它们的形成依赖于每种化合物各有一种特定的阳离子类型,Cs 用于 ,Na 用于 ,因此在结晶过程中提供了有前途的分离潜力。化合物 基于迄今为止报道的最大离散二元硒化锗簇,以及第一个混合价硫属化物锗(II/IV)超四面体。此外,它增加了能够捕获 Cs 离子的少数几种硫属化物的例子。通过单晶 X 射线衍射、能量色散 X 射线光谱和电喷雾电离质谱证实了其对 Cs 的高选择性,而对 Li、Na、K 和 Rb 的选择性较低。量子化学研究表明,较小的离子 K 和 Rb 也可以嵌入孤立的簇组装中,但由于簇聚集体在结晶过程中略有扭曲,盐中的 Cs 选择性变得独一无二。化合物 的阴离子亚结构基于超分子组装的二维网络,对 Na 表现出独特的偏好。因此,这项工作首次全面了解了特定碱金属离子选择性掺入超四面体硫属化物簇的超分子聚集体中,这为新的离子捕获技术提供了有希望的基础,尤其是对那些具有环境挑战的重碱金属离子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16e8/9936546/39e202d41bbe/ja2c13523_0007.jpg

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