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Mechanoelectric effects in ionic gels

Europhysics Letters (EPL) · 2000 · Vol. 50(4) · pp. 513–518
P. G. de GennesKo OkumuraMohsen ShahinpoorKyeong Ja Kim

Abstract

Certain fluorinated ion-exchange membranes, when swollen and suitably plated by conducting electrodes, display a spontaneous curvature increasing with the applied electric field E(1). There is also an inverse effect, where an imposed curvature induces an electric field (in open circuit conditions). We present here a compact description of these effects in the linear regime, and in static conditions: this is based on linear irreversible thermodynamics, with two driving forces (E and a water pressure gradient ∇p) and two fluxes (electric current and water current). We also give some qualitative estimates of the three Onsager coefficients which come into play.

Dielectric materials and actuatorsAdvanced Sensor and Energy Harvesting MaterialsMembrane Separation and Gas TransportElectric fieldCurvatureIonic bondingCurrent (fluid)InverseMechanicsElectric currentElectrodeIonMaterials science
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