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Molecular dynamics simulations of concentrated aqueous electrolyte solutions
Authors:Carles Calero  Jordi Faraudo  Marcel Aguilella-Arzo
Institution:1. Institut de Ciència de Materials de Barcelona (ICMAB-CSIC) , Campus de la UAB, E-08193 , Bellaterra , Spain ccalero@icmab.es;3. Institut de Ciència de Materials de Barcelona (ICMAB-CSIC) , Campus de la UAB, E-08193 , Bellaterra , Spain;4. Biophysics Group, Department of Physics , Universitat Jaume I, 12080 , Castelló , Spain
Abstract:Transport properties of concentrated electrolytes have been analysed using classical molecular dynamics simulations with the algorithms and parameters typical of simulations describing complex electrokinetic phenomena. The electrical conductivity and transport numbers of electrolytes containing monovalent (KCl), divalent (MgCl2), a mixture of both (KCl+MgCl2) and trivalent (LaCl3) cations have been obtained from simulations of the electrolytes in electric fields of different magnitude. The results obtained for different simulation parameters have been discussed and compared with experimental measurements of our own and from the literature. The electroosmotic flow of water molecules induced by the ionic current in different cases has been calculated and interpreted with the help of the hydration properties extracted from the simulations.
Keywords:electrokinetic phenomena  ionic transport  electroosmotic flow  molecular dynamics
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