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Highly Ion-Selective Covalent Organic Framework/Cellulose Nanofiber Nanofluidic Membranes for Efficient Conversion of
Longyue Xie1, Meng Zhou1, Jinping Zhou1
1College of Chemistry and Molecular Sciences, Key Laboratory of Biomedical Polymers of Ministry of Education, Wuhan University, Wuhan 430072, China.
Abstract:
Covalent organic frameworks (COFs) with tunable nanochannels and high charge density have shown great potential for constructing ion-selective membranes. However, COF membranes are limited by their mechanical brittleness and complex fabrication processes in large-scale applications. To address these limitations, we introduced highly ion-selective membranes composed of COFs and cellulose nanofibers (CNFs) for osmotic energy conversion. The COF/CNF nanofluidic membranes (CCNMs) were obtained by vacuum-assisted filtration of COF/CNF suspensions, where ionic COFs providing ion-selective channels were combined with high-strength CNFs through strong hydrogen bonding interactions. Consequently, the CCNMs achieved high ion selectivity (t+ = 0.97) and power density (5.25 W m-2) under a 50-fold NaCl gradient, meeting the commercial benchmark for osmotic energy conversion (5 W m-2). Furthermore, the CCNMs exhibited stable open-circuit voltage (VOC), short-circuit current (ISC), and power density during continuous testing for 120 days, suggesting their excellent long-term stability. When used for harvesting osmotic energy between natural river water and seawater, as well as between natural river water and high-salinity lake water, power density values reached 5.24 and 12.47 W m-2, respectively, highlighting the significant potential of CCNMs as robust and high-performance nanofluidic generators for osmotic power.
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