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Efficient separation of xylene isomers by nonporous adaptive crystals of hybrid[3]arene in both vapor and liquid phases

Yuhao Wang, Zhenyu Wang, Shiqi Wei, Sha Wu, Mengbin Wang, Guocan Yu, Peng Chen, Xiaowei Liu, Jiong Zhou

2024Materials Chemistry Frontiers21 citationsDOI

Abstract

An efficient strategy for separation of xylene isomers in both vapor and liquid phases based on nonporous adaptive crystals of hybrid[3]arene is developed, showing good performance and high recyclability for separation of o -xylene, providing a new method for separation of xylene isomers.

Topics & Concepts

XylenePorous mediumMaterials sciencep-Xyleneo-XylenePorosityChemical engineeringSeparation (statistics)Chromatographic separationOrganic chemistryChemistryTolueneComputer scienceHigh-performance liquid chromatographyComposite materialEngineeringMachine learningCovalent Organic Framework ApplicationsSupramolecular Chemistry and ComplexesLuminescence and Fluorescent Materials
Efficient separation of xylene isomers by nonporous adaptive crystals of hybrid[3]arene in both vapor and liquid phases | Litcius