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TAMOF-1中挥发性有机化合物的分离

Separation of Volatile Organic Compounds in TAMOF-1.

作者信息

González-Galán Carmen, de Fez-Febré Mabel, Giancola Stefano, González-Cobos Jesús, Vidal-Ferran Anton, Galán-Mascarós José Ramón, Balestra Salvador R G, Calero Sofía

机构信息

Department of Physical, Chemical, and Natural Systems, Universidad Pablo de Olavide, Ctra. Utrera Km 1, ES-41013 Seville, Spain.

Institute of Chemical Research of Catalonia (ICIQ), The Barcelona Institute of Science and Technology (BIST), Av. Països Catalans 16, ES-43007 Tarragona, Spain.

出版信息

ACS Appl Mater Interfaces. 2022 Jul 13;14(27):30772-30785. doi: 10.1021/acsami.2c05223. Epub 2022 Jul 1.

Abstract

Separation of volatile organic compounds is one of the most studied processes in industry. TAMOF-1 is a homochiral metal-organic framework with a crystalline network of interconnected ≈1 nm channels and has high thermal and chemical stability. Thanks to these features, it can resolve racemic mixtures of chiral drugs as a chiral stationary phase in chromatography. Interestingly, the particular shape and size of its channels, along with the presence of metallic centers and functional groups, allow establishing weak but significant interactions with guest molecules. This opens interesting possibilities not only to resolve racemates but also to separate other organic mixtures, such as saturated/unsaturated and/or linear/branched molecules. In search of these applications, we have studied the separation of volatile organic compounds in TAMOF-1. Monte Carlo simulations in the grand-canonical ensemble have been carried out to evaluate the separation of the selected molecules. Our results predict that TAMOF-1 is able to separate xylene isomers, hexane isomers, and benzene-cyclohexane mixtures. Experimental breakthrough analysis in the gas phase and also in the liquid phase confirms these predictions. Beds of TAMOF-1 are able to recognize the substitution in xylenes and the branching in hexanes, yielding excellent separation and reproducibility, thanks to the chemical and mechanical features of this material.

摘要

挥发性有机化合物的分离是工业领域中研究最多的过程之一。TAMOF-1是一种具有相互连接的约1纳米通道晶体网络的同手性金属有机框架,具有高热稳定性和化学稳定性。由于这些特性,它可以作为色谱中的手性固定相拆分手性药物的外消旋混合物。有趣的是,其通道的特殊形状和尺寸,以及金属中心和官能团的存在,使得它能够与客体分子建立微弱但显著的相互作用。这不仅为拆分外消旋体,也为分离其他有机混合物,如饱和/不饱和和/或线性/支链分子,开辟了有趣的可能性。为了探索这些应用,我们研究了TAMOF-1中挥发性有机化合物的分离。在巨正则系综中进行了蒙特卡罗模拟,以评估所选分子的分离情况。我们的结果预测,TAMOF-1能够分离二甲苯异构体、己烷异构体以及苯 - 环己烷混合物。气相和液相中的实验突破分析证实了这些预测。由于这种材料的化学和机械特性,TAMOF-1床能够识别二甲苯中的取代基和己烷中的支链,实现出色的分离和重现性。

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