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首页> 外文期刊>ACS applied materials & interfaces >Selective Adsorption and Separation of Xylene Isomers and Benzene/Cyclohexane with Microporous Organic Polymers POP-1
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Selective Adsorption and Separation of Xylene Isomers and Benzene/Cyclohexane with Microporous Organic Polymers POP-1

机译:用微孔有机聚合物的二甲苯异构体和苯/环己烷的选择性吸附和分离POP-1

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摘要

The separation of chemical substances with analogous chemical structures and physical properties remains a great challenge. In this work, triptycene-like microporous organic polymers (MOPs), POP-1, was synthesized via choosing 1,4-dimethoxybenzene (DMB) and triptycene as external cross-linkers and building blocks, respectively, and POP-1 was employed to separate xylene isomers and benzene (Bz)/cyclohexane (Cy). Results show that POP-1 has a higher uptake for m-xylene (0.29 g/g) and Bz (1.02 g/g); more intriguingly, their complete separation can be realized within 0.6 min using a column packed with POP-1. The interaction between POP-1 networks and adsorbates was also investigated using theoretical (density functional theory together with noncovalent interaction analysis) and experimental (inverse gas chromatography) approaches. Especially, both results present a good agreement, that is, weak interactions such as CH/pi interactions play a dominant role in defining the separation performance of POP-1 for xylene isomers and Bz/Cy mixtures. Our findings suggest that MOPs may open up a new route for separating the chemicals that are similar in structure and size.
机译:具有类似化学结构和物理性质的化学物质的分离仍然是一个很大的挑战。在这项工作中,通过选择1,4-二甲氧基苯(DMB)和三替三烯作为外部交联剂和建筑物,合成三替三霉素样微孔有机聚合物(MOPS),POP-1,并采用POP-1单独的二甲苯异构体和苯(BZ)/环己烷(CY)。结果表明,POP-1对M-二甲苯(0.29g / g)和Bz(1.02g / g)具有更高的摄取;更具吸引力,可以使用与POP-1填充的柱在0.6分钟内实现它们的完全分离。还使用理论(密度函数理论与非共价相互作用分析一起)研究了POP-1网络和吸附剂之间的相互作用,实验(逆气相色谱)方法。特别是,这两个结果都具有良好的一致性,即诸如CH / PI相互作用等弱相互作用在定义用于二甲苯异构体和BZ / CY混合物的POP-1的分离性能方面发挥着主导作用。我们的研究结果表明,MOP可能会开辟一个新的途径,用于分离结构和尺寸的化学品。

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