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Sol-Gel Synthesis of High-Density Zeolitic Imidazolate Framework Monoliths via Ligand Assisted Methods: Exceptional Porosity, Hydrophobicity, and Applications in Vapor Adsorption

机译:通过配体辅助方法溶胶 - 凝胶合成高密度沸石咪唑酯骨架整体:卓越的孔隙率,疏水性和蒸汽吸附中的应用

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摘要

Monolithic ZIF-8 and ZIF-67 adsorbents are synthesized at room temperature using a novel, ligand-assisted method. Despite reductions in crystallinity within some of the samples, monolithic zeolitic imidazolate frameworks (ZIFs) have superior volume-relative microporosity, total porosity, and surface areas relative to their particulate counterparts due to increased density. Samples synthesized using a single modulator, n-butylamine, have a hierarchical porosity resulting in improved adsorption capacities in mid- to high- sorbate pressure regions. ZIF-67 monoliths produced through mixed-modulator synthesis, n-butylamine and 1-methylimidazole, are almost entirely microporous. Vapor adsorption isotherms find that, whilst their amorphous content results in increased water uptake, monolithic ZIFs are found to possess higher surface and adsorption hydrophobicity than traditional non-polar adsorbents. Cosorption measurements with a common VOC toluene, under humid conditions, find that these monolithic ZIF samples outperform powder equivalents, with the mixed-modulator ZIF-67 monolith capturing 28% more VOC compared to the powder ZIFs studied due to its superior volumetric efficiency. This study provides insights into the benefits of modulator-based tuning of porosity within monolithic ZIFs which, combined with their hydrophobicity, may facilitate their application for industrial organic vapor recovery or indoor air cleaning, where efficient hydrophobic adsorbents which can operate in humid environments are essential.
机译:单片ZIF-8和ZIF-67吸附剂在室温下使用新颖的配体辅助方法合成。尽管在一些样品内的结晶度降低,但由于密度增加,整体沸石咪唑酯骨架(Zifs)具有相对于其颗粒对应物的优异的体积相对微孔,总孔隙率和表面积。使用单个调节剂(正丁胺)合成的样品具有等级孔隙率,导致中高山体压力区中的吸附容量提高。通过混合调节剂合成,正丁胺和1-甲基咪唑制备的ZIF-67整体几乎完全是微孔的。蒸汽吸附等温线发现,当它们的无定形内容导致水摄取增加,而是发现单片Zifs比传统的非极性吸附剂具有更高的表面和吸附性疏水性。在潮湿的条件下,用常见的VOC甲苯的遮蔽测量发现这些整体ZIF样品优于粉末当量,与由于其优异的体积效率而研究的粉末ZIF相比,混合调制器ZIF-67整体捕获28%。本研究提供了对单片ZIF中基于孔隙率的基于孔隙率的益处的洞察的见解,这些ZIF的调节可以促进它们对工业有机蒸汽回收或室内空气清洁的应用,其中可以在潮湿环境中运行的有效疏水性吸附剂是必不可少的。

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