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Updated: Jan 23, 2026

Synthesis Method for Cellulose Nanofiber Biotemplated Palladium Composite Aerogels
Published on: May 9, 2019
高イオン選択的共有結合性有機構造/セルロースナノファイバーナノ流体膜による浸透エネルギーの高効率変換
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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