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吸附在铬基和锆基金属有机框架上的镧系元素的局部配位环境

Local Coordination Environment of Lanthanides Adsorbed onto Cr- and Zr-based Metal-Organic Frameworks.

作者信息

Ilgen Anastasia G, Sikma R Eric, Sava Gallis Dorina F, Leung Kevin, Sun Chengjun, Song Boyoung, Sanchez Kadie M M, Smith Jacob G

机构信息

Geochemistry Department, Sandia National Laboratories, 1515 Eubank SE Mailstop 0754, Albuquerque, New Mexico 87185-0754, United States.

Nanoscale Sciences Department, Sandia National Laboratories, 1515 Eubank SE Mailstop 0754, Albuquerque, New Mexico 87185-0754, United States.

出版信息

ACS Appl Mater Interfaces. 2024 Sep 11;16(36):48536-48546. doi: 10.1021/acsami.4c09445. Epub 2024 Aug 26.

Abstract

Separating individual lanthanide (Ln) elements in aqueous mixtures is challenging. Ion-selective capture by porous materials, such as metal-organic frameworks (MOFs), is a promising approach. To design ion-selective MOFs, molecular details of the Ln adsorption complexes within the MOFs must be understood. We determine the local coordination environment of lanthanides Nd(III), Gd(III), and Lu(III) adsorbed onto Cr(III)-based terephthalate MOF (Cr-MIL-101) and Zr(IV)-based Universitet in Oslo MOFs (UiO-66 and UiO-68) and their derivatives. In the Cr(III)- and Zr(IV)-based MOFs, Ln adsorb as inner-sphere complexes at the metal oxo clusters, regardless of whether the organic linkers are decorated with amino groups. Missing linkers result in favorable Ln binding sites at oxo clusters; however, Ln can coordinate to metal sites even with linkers in place. MOF functionalization with phosphonate groups led to Ln chemisorption onto these groups, which out-compete metal cluster sites. Ln form monodentate and bidentate and mononuclear and binuclear surface complexes. We conclude that MOFs for ion-selective Ln capture can be designed by a combination of (1) maximizing metal-lanthanide interactions via shared O atoms at the metal oxo cluster sites, where mixed oxo clusters can lead to ion-selective Ln adsorption, and (2) functionalizing MOFs with Ln-selective groups capable of out-completing the metal oxo cluster sites.

摘要

在水性混合物中分离单个镧系元素具有挑战性。通过多孔材料(如金属有机框架(MOF))进行离子选择性捕获是一种很有前景的方法。要设计离子选择性MOF,必须了解MOF内镧系元素吸附配合物的分子细节。我们确定了吸附在基于Cr(III)的对苯二甲酸MOF(Cr-MIL-101)和基于Zr(IV)的奥斯陆大学MOF(UiO-66和UiO-68)及其衍生物上的镧系元素Nd(III)、Gd(III)和Lu(III)的局部配位环境。在基于Cr(III)和Zr(IV)的MOF中,无论有机连接体是否用氨基修饰,Ln都以内层配合物的形式吸附在金属氧簇上。缺失连接体会在氧簇处产生有利的Ln结合位点;然而,即使连接体存在,Ln也可以与金属位点配位。用膦酸酯基团对MOF进行功能化导致Ln化学吸附在这些基团上,从而胜过金属簇位点。Ln形成单齿和双齿以及单核和双核表面配合物。我们得出结论,用于离子选择性捕获Ln的MOF可以通过以下组合来设计:(1)通过金属氧簇位点处共享的O原子最大化金属-镧系元素相互作用,其中混合氧簇可导致离子选择性Ln吸附;(2)用能够胜过金属氧簇位点的Ln选择性基团对MOF进行功能化。

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