Scalability of nanopore osmotic energy conversion

Makusu Tsutsui , Wei-Lun Hsu , Kazumichi Yokota , Iat Wai Leong , Hirofumi Daiguji , Tomoji Kawai

Exploration ›› 2024, Vol. 4 ›› Issue (2) : 20220110

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Exploration ›› 2024, Vol. 4 ›› Issue (2) : 20220110 DOI: 10.1002/EXP.20220110
RESEARCH ARTICLE

Scalability of nanopore osmotic energy conversion

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Abstract

Artificial nanofluidic networks are emerging systems for blue energy conversion that leverages surface charge-derived permselectivity to induce voltage from diffusive ion transport under salinity difference. Here the pivotal significance of electrostatic interchannel couplings inmulti-nanoporemembranes,which impose constraints on porosity and subsequently influence the generation of large osmotic power outputs, is illustrated. Constructive interference is observed between two 20 nm nanopores of 30 nm spacing that renders enhanced permselectivity to osmotic power output via the recovered electroneutrality. On contrary, the interference is revealed as destructive in two-dimensional arrays causing significant deteriorations of the ion selectivity even for the nanopores sparsely distributed at an order of magnitude larger spacing than the Dukhin length. Most importantly, a scaling law is provided for deducing the maximal membrane area and porosity to avoid the selectivity loss via the inter-pore electrostatic coupling. As the electric crosstalk is inevitable in any fluidic network, the present findings can be a useful guide to design nanoporous membranes for scalable osmotic power generations.

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interpore interactions / ion selectivity / multipore / osmotic power / reverse electrodialysis

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Makusu Tsutsui, Wei-Lun Hsu, Kazumichi Yokota, Iat Wai Leong, Hirofumi Daiguji, Tomoji Kawai. Scalability of nanopore osmotic energy conversion. Exploration, 2024, 4(2): 20220110 DOI:10.1002/EXP.20220110

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2023 The Authors. Exploration published by Henan University and John Wiley & Sons Australia, Ltd.

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