Crystalline Porous Organic Cage Membranes Constructed Using Fortified Intermolecular Interactions for Molecular Sieving

Author:

Song Ziye1,Liu Linghao1,Sun Qian1,Du Jingcheng1,Guan Jian1,Dou Pengjia1,Zhang Runnan2,Jiang Zhongyi2,Liu Jiangtao1ORCID

Affiliation:

1. Department of Environmental Science and Engineering, CAS Key Laboratory of Urban Pollutant Conversion University of Science and Technology of China Hefei 230026 China

2. Key Laboratory for Green Chemical Technology, School of Chemical Engineering and Technology Tianjin University Tianjin 300072 China

Abstract

AbstractAmong the various types of materials with intrinsic porosity, porous organic cages (POCs) are distinctive as discrete molecules that possess intrinsic cavities and extrinsic channels capable of facilitating molecular sieving. However, the fabrication of POC membranes remains highly challenging due to the weak noncovalent intermolecular interactions and most reported POCs are powders. In this study, we constructed crystalline free‐standing porous organic cage membranes by fortifying intermolecular interactions through the induction of intramolecular hydrogen bonds, which was confirmed by single‐crystal X‐ray analysis. To elucidate the driving forces behind, a series of terephthaldehyde building blocks containing different substitutions were reacted with flexible triamine under different conditions via interfacial polymerization (IP). Furthermore, density functional theory (DFT) calculations suggest that intramolecular hydrogen bonding can significantly boost the intermolecular interactions. The resulting membranes exhibited fast solvent permeance and high rejection of dyes not only in water, but also in organic solvents. In addition, the membrane demonstrated excellent performance in precise molecular sieving in organic solvents. This work opens an avenue to designing and fabricating free‐standing membranes composed of porous organic materials for efficient molecular sieving.

Funder

Fundamental Research Funds for the Central Universities

Publisher

Wiley

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