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Metal-Organic Framework MIL-101 (Cr) for High-Performance Liquid Chromatographic Separation of Substituted Aromatics

机译:用于取代芳烃的高效液相色谱分离的金属有机骨架MIL-101(Cr)

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The diverse structures and pore topologies, accessible cages and tunnels, and high surface areas make metal-organic frameworks attractive as novel media in separation sciences. Here we report the slurry-packed MIL-101(Cr) column for high-performance liquid chromatographic separation of substituted aromatics. The MIL-101(Cr) packed column (5 cm long X 4.6 mm i.d.) offered high-resolution separation of ethylbenzene (EB) and xylene, dichlorobenzene and chlorotoluene isomers, and EB and styrene. The typical impurities of toluene and o-xylene in EB and styrene mixtures were also efficiently separated on the MIL-101(Cr) packed column. The column efficiencies for EB, m-dichlorobenzene, and m-chlorotoluene are 20000, 13000, and 10000 plates m~(-1), respectively. The relative standard deviation for five replicate separations of the substituted aromatics was 0.2-0.7percent, 0.9-2.9percent, 0.5-2.1percent, and 0.6-2.7percent for the retention time, peak area, peak height, and half peak width, respectively. The MIL-101 (Cr) offered high affinity for the ortho-isomer, allowing fast and selective separation of the ortho-isomer from the other isomers within 3 min using dichloromethane as the mobile phase. The effects of the mobile phase composition, injected sample mass, and temperature were investigated. The separation of xylene, dichlorobenzene, and chlorotoluene on MIL-101(Cr) was controlled by entropy change, while the separation of EB and styrene on MIL-101(Cr) was governed by enthalpy change.
机译:多样的结构和孔隙拓扑结构,易于接近的笼子和隧道以及高表面积,使金属有机骨架成为分离科学中的新型媒体,具有吸引力。在这里,我们报告了填充淤浆的MIL-101(Cr)色谱柱,用于高效液相色谱法分离取代的芳烃。 MIL-101(Cr)填充柱(长5厘米x内径4.6毫米)提供了乙苯和二甲苯,二氯苯和氯甲苯异构体以及EB和苯乙烯的高分辨率分离。 EB和苯乙烯混合物中的甲苯和邻二甲苯中的典型杂质也可以通过MIL-101(Cr)填充塔进行有效分离。 EB,间二氯苯和间氯甲苯的柱效分别为20000、13000和10000板m〜(-1)。保留时间,峰面积,峰高和半峰宽的保留时间,峰面积,峰高和半峰宽的五次重复分离的相对标准偏差分别为0.2-0.7%,0.9-2.9%,0.5-2.1%和0.6-2.7% 。 MIL-101(Cr)对邻位异构体具有很高的亲和力,使用二氯甲烷作为流动相,可在3分钟内快速选择性地将邻位异构体与其他异构体分离。研究了流动相组成,进样质量和温度的影响。 MIL-101(Cr)上二甲苯,二氯苯和氯甲苯的分离受熵变化控制,而MIL-101(Cr)上EB和苯乙烯的分离受焓变化控制。

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