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A water-born Zr-based porous coordination polymer: Modulated synthesis of Zr-fumarate MOF

机译:水性Zr基多孔配位聚合物:富马酸锆MOF的调制合成

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摘要

In this work, we present the water-based synthesis of the Zr-fumarate MOF (Zr-film MOF) by applying a monocarboxylic acid as modulator. The original synthesis of Zr-fum MOF was performed in a DMF-based batch at 120 degrees C. The product showed exceptional stability against aqueous solutions. Thus, a water-based synthesis seemed to be promising. Indeed, by adding various amounts of formic acid, acetic acid or propionic acid as modulator, respectively, highly crystalline Zr-film MOF can be obtained from water at 120 degrees C. The investigation of the influence of modulating molecules with different alkyl chain lengths showed that the particle size decreases when monocarboxylic acids with longer alkyl chains are used, e.g. acetic acid and propionic acid in comparison to formic acid. For the formation of the Zr-fum MOF synthesised with formic acid as modulator, the thermogravimetric and sorption behaviour as well as the stability against various solvents and pH values is discussed in detail. Furthermore, the Zr-turn MOF can also be obtained under very benign reaction conditions at room temperature from water, making this material interesting for various applications, for example as a biomaterial. (C) 2014 Elsevier Inc. All rights reserved.
机译:在这项工作中,我们介绍了通过应用一元羧酸作为调节剂来进行富马酸锆MOF(Zr膜MOF)的水基合成。 Zr-fum MOF的原始合成是在基于DMF的批次中于120摄氏度进行的。该产品对水溶液显示出卓越的稳定性。因此,水基合成似乎很有希望。实际上,通过分别添加各种量的甲酸,乙酸或丙酸作为调节剂,可以从120℃的水中获得高度结晶的Zr膜MOF。对不同烷基链长度的调节分子的影响的研究表明当使用具有更长烷基链的一元羧酸时,粒径减小乙酸和丙酸与甲酸相比。为了形成以甲酸为调节剂的Zr-fum MOF,详细讨论了热重和吸附行为以及对各种溶剂和pH值的稳定性。此外,Zr-turn MOF也可以在非常良性的反应条件下,在室温下由水制得,这使得该材料对于各种应用(例如作为生物材料)具有吸引力。 (C)2014 Elsevier Inc.保留所有权利。

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