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Merging Ion Concentration Polarization between Juxtaposed Ion Exchange Membranes to Block the Propagation of the Polarization Zone
Published on: February 23, 2017
Ion selectivity in uncharged tapered nanoslits through heterogeneous water polarization
Tim E Veenstra1,2, Gerardo Campos-Villalobos1,3, Giuliana Giunta1,4
1Soft Condensed Matter & Biophysics, Debye Institute for Nanomaterials Science, Utrecht University, Princetonplein 1, 3584 CC Utrecht, The Netherlands.
Abstract:
We employ molecular dynamics simulations to investigate ion and water transport driven by an electric field through quasi-two-dimensional nanoslits with a tapered geometry. Despite the absence of surface charge on the (non-polarizable) channel walls and the associated electric double layer, we do observe robust ion selectivity. This selectivity favors the transport of cations from base to tip when the electric field is directed from base to tip, and anions from base to tip when the field direction is reversed. In addition, we observe a corresponding electro-osmotic water flow from base to tip, regardless of the electric field direction. Intriguingly, ion selectivity and electro-osmotic flow are conventionally associated with surface charge and electric double layers. Here, however, we uncover a novel mechanism for these phenomena in uncharged tapered nanoslits, where ion selectivity arises from the divergence of the heterogeneous water polarization.
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