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HKUST-1的机械化学缺陷工程及其产生的缺陷对二氧化碳吸附和催化环丙烷化的影响。

Mechanochemical defect engineering of HKUST-1 and impact of the resulting defects on carbon dioxide sorption and catalytic cyclopropanation.

作者信息

Steenhaut Timothy, Grégoire Nicolas, Barozzino-Consiglio Gabriella, Filinchuk Yaroslav, Hermans Sophie

机构信息

Université catholique de Louvain, IMCN Place Louis Pasteur 1/L4.01.03 1348 Louvain-la-Neuve Belgium

出版信息

RSC Adv. 2020 May 27;10(34):19822-19831. doi: 10.1039/c9ra10412g. eCollection 2020 May 26.

Abstract

Metal-organic frameworks (MOFs) are recognized as ideal candidates for many applications such as gas sorption and catalysis. For a long time the properties of these materials were thought to essentially arise from their well-defined crystal structures. It is only recently that the importance of structural defects for the properties of MOFs has been evidenced. In this work, salt-assisted and liquid-assisted grinding were used to introduce defects in a copper-based MOF, namely HKUST-1. Different milling times and post-synthetic treatments with alcohols allow introduction of defects in the form of free carboxylic acid groups or reduced copper(i) sites. The nature and the amount of defects were evaluated by spectroscopic methods (FTIR, XPS) as well as TGA and NH temperature-programmed desorption experiments. The negative impact of free -COOH groups on the catalytic cyclopropanation reaction of ethyl diazoacetate with styrene, as well as on the gravimetric CO sorption capacities of the materials, was demonstrated. The improvement of the catalytic activity of carboxylic acid containing materials by the presence of Cu sites was also evidenced.

摘要

金属有机框架材料(MOFs)被认为是气体吸附和催化等许多应用的理想候选材料。长期以来,人们认为这些材料的性质主要源于其明确的晶体结构。直到最近,结构缺陷对MOFs性质的重要性才得到证实。在这项工作中,采用盐辅助研磨和液体辅助研磨在一种铜基金属有机框架材料HKUST-1中引入缺陷。不同的研磨时间以及用醇进行的合成后处理能够以游离羧酸基团或还原的铜(I)位点的形式引入缺陷。通过光谱方法(傅里叶变换红外光谱法、X射线光电子能谱)以及热重分析和氨程序升温脱附实验对缺陷的性质和数量进行了评估。结果表明,游离的-COOH基团对重氮乙酸乙酯与苯乙烯的催化环丙烷化反应以及材料的重量法CO吸附容量有负面影响。同时也证明了铜位点的存在对含羧酸材料催化活性的提高作用。

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