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首页> 外文期刊>Journal of the American Chemical Society >Separation of Monochlorotoluene Isomers by Nonporous Adaptive Crystals of Perethylated Pillar[5]arene and Pillar[6]arene
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Separation of Monochlorotoluene Isomers by Nonporous Adaptive Crystals of Perethylated Pillar[5]arene and Pillar[6]arene

机译:过乙基化的柱[5]芳烃和柱[6]芳烃的无孔适应性晶体分离一氯甲苯异构体

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Separation of monochlorotoluene isomers is a vital process to obtain highly pure p-chlorotoluene, which is irreplaceable in the production of medicines and pesticides. However, traditional separation methods suffer from great energy consumption, cumbersome operation or use of organic desorbents. Herein, an energy-efficient and environmentally friendly method is developed through an absorptive separation strategy based on nonporous adaptive crystals of perethylated pillar[5]arene (EtPS) and pillar[6]arene (EtP6). EtPS and EtP6 crystals separate p-chlorotoluene from a p-chlorotoluene/o-chlorotoluene equimolar mixture with purities of 99.1% and 96.1%, respectively and show no decrease in selectivity upon cycling. The selectivity is attributed to both the stability of the final crystal structure upon guest capture and suitable host cavity size/shape. Besides, we discovered the gate-opening behavior changes of EtPS crystals at different temperatures after absorption of p-chlorotoluene/o-chlorotoluene mixtures with various p-chlorotoluene fractions, which is helpful to understand the thermodynamics of the absorption process.
机译:一氯甲苯异构体的分离是获得高纯度对氯甲苯的重要过程,在药物和农药生产中这是不可替代的。然而,传统的分离方法消耗大量能量,操作麻烦或使用有机解吸剂。在此,通过基于全乙基化柱[5]芳烃(EtPS)和柱[6]芳烃(EtP6)的无孔适应性晶体的吸收分离策略,开发了一种节能环保的方法。 EtPS和EtP6晶体分别从对氯甲苯/邻氯甲苯等摩尔混合物中分离出对氯甲苯,纯度分别为99.1%和96.1%,并且在循环时选择性没有降低。选择性归因于客体捕获时最终晶体结构的稳定性以及合适的宿主腔尺寸/形状。此外,我们发现在吸收不同对氯甲苯馏分的对氯甲苯/邻氯甲苯混合物后,EtPS晶体在不同温度下的开门行为变化,有助于理解吸收过程的热力学。

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