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Effective Charged Exterior Surfaces for Enhanced Ionic Diffusion through Nanopores under Salt Gradients

Long Ma, Xuan An, Fenhong Song, Yinghua Qiu

2022The Journal of Physical Chemistry Letters39 citationsDOI

Abstract

High-performance osmotic energy conversion requires both large ionic throughput and high ionic selectivity, which can be significantly promoted by exterior surface charges simultaneously, especially for short nanopores. Here, we investigate the enhancement of ionic diffusion by charged exterior surfaces under various conditions and explore corresponding effective charged areas. From simulations, ionic diffusion is promoted more significantly by exterior surface charges through nanopores with a shorter length, wider diameter, and larger surface charge density or under higher salt gradients. Effective widths of the charged ring regions near nanopores are reversely proportional to the pore length and linearly dependent on the pore diameter, salt gradient, and surface charge density. Due to the important role of effective charged areas in the propagation of ionic diffusion through single nanopores to cases with porous membranes, our results may provide useful guidance to the design and fabrication of porous membranes for practical high-performance osmotic energy harvesting.

Topics & Concepts

NanoporeIonic bondingDiffusionChemical physicsSurface chargeMembraneCharge densityMaterials scienceOsmotic powerSalt (chemistry)IonNanotechnologyChemical engineeringChemistryThermodynamicsPhysical chemistryPhysicsOrganic chemistryReverse osmosisBiochemistryEngineeringQuantum mechanicsForward osmosisNanopore and Nanochannel Transport StudiesMembrane-based Ion Separation TechniquesFuel Cells and Related Materials
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