Benign by Design: Green and Scalable Synthesis of Zirconium UiO-Metal–Organic Frameworks by Water-Assisted Mechanochemistry

金属有机骨架 机械化学 材料科学 醋酸 催化作用 化学工程 溶剂热合成 无机化学 有机化学 纳米技术 化学 冶金 吸附 工程类
作者
Bahar Karadeniz,Ashlee J. Howarth,Tomislav Stolar,Timur İslamoğlu,Igor Dejanović,Martina Tireli,Megan C. Wasson,Su‐Young Moon,Omar K. Farha,Tomislav Friščić,Krunoslav Užarević
出处
期刊:ACS Sustainable Chemistry & Engineering [American Chemical Society]
卷期号:6 (11): 15841-15849 被引量:199
标识
DOI:10.1021/acssuschemeng.8b04458
摘要

We present a solvent-free, green, and rapid mechanochemical route for the synthesis of a series of zirconium metal–organic frameworks (MOFs) composed of Zr 6 cluster nodes, UiO-66, UiO-66-NH 2, MOF-801, and MOF-804, both on a laboratory scale and by scalable and flow mechanochemical processing. The methodology, based on the use of a nonconventional zirconium dodecanuclear acetate cluster and a minute amount of water as an additive, affords high-quality MOFs in less than 1 h of milling, with minimal requirements for workup processing and eliminating the need for conventional hazardous solvents, such as dimethylformamide. Moreover, the use of a dodecanuclear zirconium acetate precursor circumvents the need for modulators resulting in acetic acid as the only byproduct of the reaction, which does not harm these acid-resistant materials. The porosity, thermal and chemical stability, as well as catalytic activity of mechanochemically prepared Zr-based MOFs are similar to those of solvothermally synthesized counterparts. Finally, the synthesis is readily applicable on a 10 g scale by using a planetary mill, and is also performed by solid-state flow synthesis using twin-screw extrusion (TSE), affording more than 100 g of catalytically active UiO-66-NH 2 material in a continuous process at a rate of 1.4 kg/h.
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