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多变量金属有机框架MTV-MIL-101的合成后阳离子交换:真的可以实现吗?

Multivariate metal-organic framework MTV-MIL-101 post-synthetic cation exchange: is it truly achievable?

作者信息

Zorainy Mahmoud Y, Titi Hatem M, Kaliaguine Serge, Boffito Daria C

机构信息

Chemical Engineering Department, Polytechnique Montréal, Montréal, QC H3C 3A7, Canada.

Chemical Engineering Department, Military Technical College, Cairo, Egypt.

出版信息

Dalton Trans. 2022 Feb 22;51(8):3280-3294. doi: 10.1039/d1dt04222j.

Abstract

The post-synthetic exchange (PSE) method is a well-proven route to replace, modify, and add different functionalities to metal-organic frameworks (MOFs). Particularly, the solvent-assisted cation substitution (SACS) technique has been reported to prepare mixed-metal multivariate metal-organic frameworks (MTV-MOFs). However, such a technique does not apply to all types of MOFs. In 2013, Szilágyi reported the achievement of the mixed-metal MTV-MIL-101 framework PSE. Since then, a debate has been taking place about the validity of these findings. On the other hand, the attainment of the mixed-metal MIL-101 was reported to be obtainable through the direct synthesis, which is, to some, the only way to achieve it. Here, we settle this dispute by investigating Szilágyi's method not only as described, but also at extended conditions of time and different metal precursors: all attempts were vain. However, by reconsidering the refluxing solvent (dimethylformamide "DMF" instead of water) and the applied reaction conditions (110 °C-20 h), mixed-metal MIL-101(Cr/Fe) was achieved a simple PSE method.

摘要

合成后交换(PSE)方法是一种经过充分验证的途径,可用于替换、修饰金属有机框架(MOF)并为其添加不同功能。特别是,据报道溶剂辅助阳离子取代(SACS)技术可用于制备混合金属多元金属有机框架(MTV-MOF)。然而,这种技术并不适用于所有类型的MOF。2013年,西拉吉报道了通过PSE实现混合金属MTV-MIL-101框架。从那时起,关于这些发现的有效性就一直存在争议。另一方面,据报道通过直接合成可以获得混合金属MIL-101,对一些人来说,这是实现它的唯一途径。在这里,我们通过研究西拉吉的方法来解决这一争议,不仅按照所描述的那样进行研究,还在延长的时间条件和不同的金属前体下进行研究:所有尝试都徒劳无功。然而,通过重新考虑回流溶剂(二甲基甲酰胺“DMF”而不是水)和应用的反应条件(110℃-20小时),通过一种简单的PSE方法实现了混合金属MIL-101(Cr/Fe)。

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