Litcius/Paper detail

Electrostatic‐Induced Crystal‐Rearrangement of Porous Organic Cage Membrane for CO<sub>2</sub> Capture

Kai Qu, Jipeng Xu, Liheng Dai, Yixing Wang, Hongyan Cao, Dezhu Zhang, Yulin Wu, Weiyi Xu, Kang Huang, Cheng Lian, Xuhong Guo, Wanqin Jin, Zhi Xu

2022Angewandte Chemie International Edition55 citationsDOI

Abstract

Abstract Porous Organic Cages (POCs) with tunable tailoring chemistry properties and polymer‐like processing conditions are of great potential for molecular selective membranes, but it remains challenging in the assembly of high crystalline POCs with regular nanochannels for effective molecular sieving. Here we report an electrostatic‐induced crystal‐rearrangement strategy for the design of a POC membrane with heterostructure. Due to electrostatic attraction, ionic liquid molecules induced cage molecules to rearrange into a sub‐10 nm uniform and defect‐free crystal layer, which displayed competitive CO 2 separation performance. The optimized hetero‐structured membrane exhibited an attractive CO 2 /N 2 separation selectivity of over 130, which was superior to the state‐of‐the‐art membranes, accompanied with excellent long‐term and thermal shock stability. This strategy provides a new inspiration for the preparation of crystal‐rearranged membranes with regular channels for gas molecule sieving.

Topics & Concepts

MembraneMoleculeCrystal (programming language)Gas separationPolymerMaterials sciencePorosityChemical engineeringSelectivityIonic bondingThermal stabilityElectrostaticsChemical physicsChemistryNanotechnologyOrganic chemistryPhysical chemistryCatalysisComposite materialIonBiochemistryProgramming languageComputer scienceEngineeringMembrane Separation and Gas TransportCovalent Organic Framework ApplicationsMetal-Organic Frameworks: Synthesis and Applications