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Theory of Ion Transport in Electrochemically Switchable Nanoporous Metallized Membranes

โœ Scribed by Christian Amatore; Alexander I. Oleinick; Irina Svir


Publisher
John Wiley and Sons
Year
2009
Tongue
English
Weight
338 KB
Volume
10
Category
Article
ISSN
1439-4235

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โœฆ Synopsis


Abstract

A physicomathematical model of ion transport through a synthetic electrochemically switchable membrane with nanometric metalโ€plated pores is presented. Due to the extremely small size of the cylindrical pores, electrical double layers formed inside overlap, and thus, strong electrostatic fields whose intensities vary across the crossโ€sections of the nanopores are created. Based on the proposed model a relationship between the relative electrostatic energies experienced by ions in the nanopores and the potential applied to the membrane is established. This allows the prediction of transference numbers and explains quantitatively the ionโ€transport switching capability of such synthetic membranes. The predictions of this model agree satisfactorily with previous experimental data obtained for this type of devices by Martin and coโ€workers.


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