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金属有机框架材料水收集过程中受限水簇的形成:CAU-10-H与CAU-10-CH的对比

Confined Water Cluster Formation in Water Harvesting by Metal-Organic Frameworks: CAU-10-H versus CAU-10-CH.

作者信息

van der Veen Monique A, Canossa Stefano, Wahiduzzaman Mohammad, Nenert Gwilherm, Frohlich Dominik, Rega Davide, Reinsch Helge, Shupletsov Leonid, Markey Karen, De Vos Dirk E, Bonn Mischa, Stock Norbert, Maurin Guillaume, Backus Ellen H G

机构信息

Catalysis Engineering, Department of Chemical Engineering, TU Delft, Delft, 2628, The Netherlands.

ICGM, University of Montpellier, CNRS, ENSCM, Montpellier, 34293, France.

出版信息

Adv Mater. 2024 Mar;36(12):e2210050. doi: 10.1002/adma.202210050. Epub 2023 Apr 23.

DOI:10.1002/adma.202210050
PMID:36651201
Abstract

Several metal-organic frameworks (MOFs) excel in harvesting water from the air or as heat pumps as they show a steep increase in water uptake at 10-30 % relative humidity (RH%). A precise understanding of which structural characteristics govern such behavior is lacking. Herein, CAU-10-H and CAU-10-CH are studied with H, CH corresponding to the functions grafted to the organic linker. CAU-10-H shows a steep water uptake ≈18 RH% of interest for water harvesting, yet the subtle replacement of H by CH in the organic linker drastically changes the water adsorption behavior to less steep water uptake at much higher humidity values. The materials' structural deformation and water ordering during adsorption with in situ sum-frequency generation, in situ X-ray diffraction, and molecular simulations are unraveled. In CAU-10-H, an energetically favorable water cluster is formed in the hydrophobic pore, tethered via H-bonds to the framework μOH groups, while for CAU-10-CH, such a favorable cluster cannot form. By relating the findings to the features of water adsorption isotherms of a series of MOFs, it is concluded that favorable water adsorption occurs when sites of intermediate hydrophilicity are present in a hydrophobic structure, and the formation of energetically favorable water clusters is possible.

摘要

几种金属有机框架材料(MOF)在从空气中收集水分或用作热泵方面表现出色,因为它们在相对湿度(RH%)为10 - 30%时水吸附量急剧增加。目前尚缺乏对决定这种行为的结构特征的精确理解。在此,对CAU - 10 - H和CAU - 10 - CH进行了研究,其中H、CH分别对应接枝到有机连接体上的官能团。CAU - 10 - H在水收集方面表现出约18 RH%的急剧水吸附量,但有机连接体中H被CH的细微取代极大地改变了水吸附行为,使其在更高湿度值下的水吸附量变化不那么陡峭。通过原位和频产生、原位X射线衍射以及分子模拟揭示了材料在吸附过程中的结构变形和水的有序排列。在CAU - 10 - H中,在疏水孔中形成了一个能量有利的水簇,通过氢键与框架μOH基团相连,而对于CAU - 10 - CH,这样一个有利的簇无法形成。通过将这些发现与一系列MOF的水吸附等温线特征相关联,得出结论:当疏水结构中存在中等亲水性位点时,会发生有利的水吸附,并且有可能形成能量有利的水簇。

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