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Published on: July 20, 2021
Phosphorylated Natural Bamboo Membrane for Osmotic Energy Harvesting
Yixuan Li1, Shuyu Li1, Wenyi Guo1
1State Key Laboratory of Bioinspired Interfacial Materials Science, School of Chemistry, Beihang University, Beijing, P. R. China.
Abstract:
The development of low-cost and environment friendly ion-selective nanofluidic membranes with a high-performance is necessary for osmotic power generation. Natural bamboo membranes with a layered structure provides water and nutrients transport channels for bamboo growth. Here, we introduce ionized phosphate groups into natural bamboo membranes through a urea-assisted dehydration reaction between the hydroxyl groups in cellulose and phosphoric acid. The phosphorylated bamboo membrane exhibits surface-charge-governed ion transport with a cationic selectivity. When applied for osmotic energy harvesting, it achieves a power density of 6.42 W/m2 under a 50-fold salinity gradient formed by 0.5/0.01 m KCl, and a rising value of 22.1 W/m2 in hypersaline water, outperforming reported synthetic cellulose membranes and natural membranes. A tandem stack of 24 units produces 1.8 V voltage, serving as the power source for a calculator. Our work presents a promising strategy for developing sustainable nanofluidic membranes from nature for efficient osmotic energy conversion.

