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纳米限域作用和亲水吸附位点诱导的锆基金属有机框架中的水 motif

Water motifs in zirconium metal-organic frameworks induced by nanoconfinement and hydrophilic adsorption sites.

作者信息

Lamaire Aran, Wieme Jelle, Vandenhaute Sander, Goeminne Ruben, Rogge Sven M J, Van Speybroeck Veronique

机构信息

Center for Molecular Modeling (CMM), Ghent University, Zwijnaarde, Belgium.

出版信息

Nat Commun. 2024 Nov 19;15(1):9997. doi: 10.1038/s41467-024-54358-z.

Abstract

The intricate hydrogen-bonded network of water gives rise to various structures with anomalous properties at different thermodynamic conditions. Nanoconfinement can further modify the water structure and properties, and induce specific water motifs, which are instrumental for technological applications such as atmospheric water harvesting. However, so far, a causal relationship between nanoconfinement and the presence of specific hydrophilic adsorption sites is lacking, hampering the further design of nanostructured materials for water templating. Therefore, this work investigates the organisation of water in zirconium-based metal-organic frameworks (MOFs) with varying topologies, pore sizes, and chemical composition, to extract design rules to shape water. The highly tuneable pores and hydrophilicity of MOFs makes them ideally suited for this purpose. We find that small nanopores favour orderly water clusters that nucleate at hydrophilic adsorption sites. Favourably positioning the secondary adsorption sites, hydrogen-bonded to the primary adsorption sites, allows larger clusters to form at moderate adsorption conditions. To disentangle the importance of nanoconfinement and hydrophilic nucleation sites in this process, we introduce an analytical model with precise control of the adsorption sites. This sheds a new light on design parameters to induce specific water clusters and hydrogen-bonded networks, thus rationalising the application space of water in nanoconfinement.

摘要

水的复杂氢键网络在不同热力学条件下会产生具有异常性质的各种结构。纳米限域可以进一步改变水的结构和性质,并诱导特定的水结构单元,这对于诸如大气水收集等技术应用至关重要。然而,到目前为止,纳米限域与特定亲水性吸附位点的存在之间缺乏因果关系,这阻碍了用于水模板的纳米结构材料的进一步设计。因此,这项工作研究了具有不同拓扑结构、孔径和化学成分的锆基金属有机框架(MOF)中水的组织,以提取塑造水的设计规则。MOF高度可调谐的孔和亲水性使其非常适合此目的。我们发现小纳米孔有利于在亲水性吸附位点成核的有序水簇。将二级吸附位点与一级吸附位点形成氢键并有利地定位,可使较大的簇在中等吸附条件下形成。为了弄清楚纳米限域和亲水性成核位点在此过程中的重要性,我们引入了一个对吸附位点有精确控制的分析模型。这为诱导特定水簇和氢键网络的设计参数提供了新的思路,从而使水在纳米限域中的应用空间合理化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d547/11574101/59a464460f11/41467_2024_54358_Fig1_HTML.jpg

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