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Synthesis and Evaluation of Acid-base Bi-functional MOFs Catalyst Supported on PVDF Membrane for Glucose Dehydration to 5-HMF

机译:PVDF膜上支持的葡萄糖脱水至5-HMF的酸碱双功能MOF的合成和评估

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摘要

Metal-organic frameworks (MOFs) catalysts loaded on carriers with acid-base functional active sites could be applied widely to heterogeneous catalysis, which can promote stability and activity. In this work, we report a modulated hydrothermal (MHT) method for the direct synthesis of acid-base bifunctional UiO-66 catalysts grafted to modified polyvinylidene fluoride (PVDF). Firstly, PVDF was modified by dopamine hydrochloride (PDA) in trimethylol aminomethane (tris) buffer, named as PDA@PVDF. Secondly, UiO-66 material was produced via the coordination of organic ligands with zirconium ions, and could be directly loaded onto PDA@PVDF. Moreover, MHT synthetic approach can be used to synthesize other identical structures MOFs with acid, base and acid-base catalysts by adjusting the ratio of monosodium 2-sulfoterephthalate and/or 2-amino- terephthalic. The obtained materials were characterized, and the catalytic performances of glucose to 5-hydroxymeth- ylfurfural (5-HMF) have been evaluated. The developed facile reaction system with UiO-66 MOFs catalysts offers a new route to large-scale economical viable processes of carbohydrates conservation to 5-HMF.
机译:可以将带有酸碱功能活性位点的载体上的金属有机框架(MOFS)催化剂广泛应用于异质催化,这可以促进稳定性和活性。在这项工作中,我们报告了一种直接合成酸碱双功能UIO-66催化剂的调制水热(MHT)方法,该催化剂接枝到修饰的聚乙烯二氟化物(PVDF)。首先,PVDF通过三甲基氨基甲烷(TRIS)缓冲液中的多巴胺盐酸(PDA)修饰,称为PDA@PVDF。其次,通过有机配体与锆离子的配位产生UIO-66材料,可以直接加载到PDA@PVDF上。此外,MHT合成方法可用于通过调节2-硫邻苯二酚和/或2-氨基terephthalic的比率,使其他相同的结构与酸,碱和酸碱催化剂合成其他相同的结构。对获得的材料进行了表征,并评估了葡萄糖对5-羟基 - Ylfuralfural(5-HMF)的催化性能。带有UIO-66 MOFS催化剂的开发的易于反应系统为大规模经济可行的碳水化合物保护过程提供了新的途径,至5-HMF。

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