The frequency dependence of electrical conductivity in a 0.1 molar univalent restricted primitive model electrolyte confined in cylindrical pores is studied by non-equilibrium molecular dynamics simulations. At high frequencies, conductivity is independent of pore size and approaches the zero value limit. The phase lag is independent of pore size and approaches the value π/2 at high frequency. At low frequencies, the conductivity is relatively constant and approaches the zero frequency (dc) conductivity value. For pores with radius smaller than 3 times the ion diameter, severe confinement effects lead to different low frequency behaviour. In these very small pores, axial collisions increase at low frequency and lead to much lower conductivi...
AbstractA detailed picture of water and ion properties in small pores is important for understanding...
Molecular dynamics (MD) simulation was performed to investigate the ionic current through charged na...
Ion transport through nanoporous materials is of fundamental importance for the design and developme...
Equilibrium and nonequilibrium molecular dynamics simulations are performed to calculate the diffusi...
Behaviour of electrolytes confined in cylindrical and slit pores are studied by computer simulations...
The dynamic properties of electrolytes in nanopores were studied using the equilibrium and non-equil...
One-dimensional capacitor behavior is reported for electrolytes confined in a nanopore. The electric...
Molecular dynamics (MD) simulations of electrophoretic transport of monovalent ions through field-st...
Molecular dynamics (MD) simulations of electrophoretic transport of monovalent ions through field-st...
Equilibrium (HMD) and nonequilibrium molecular dynamics (NEMD) simulations were conducted to investi...
An alternating current nonequilibrium molecular dynamics (AC-NEMD) simulation technique is applied t...
Grand canonical ensemble Monte Carlo simulations are performed to investigate the concentrations of ...
Molecular dynamics (MD) simulations have become a powerful tool to study electroporation (EP) in ato...
International audienceUsing Brownian dynamics simulations, we investigate the effects of confinement...
The problem of predicting selective transport of ions through nano-pores from their structure in the...
AbstractA detailed picture of water and ion properties in small pores is important for understanding...
Molecular dynamics (MD) simulation was performed to investigate the ionic current through charged na...
Ion transport through nanoporous materials is of fundamental importance for the design and developme...
Equilibrium and nonequilibrium molecular dynamics simulations are performed to calculate the diffusi...
Behaviour of electrolytes confined in cylindrical and slit pores are studied by computer simulations...
The dynamic properties of electrolytes in nanopores were studied using the equilibrium and non-equil...
One-dimensional capacitor behavior is reported for electrolytes confined in a nanopore. The electric...
Molecular dynamics (MD) simulations of electrophoretic transport of monovalent ions through field-st...
Molecular dynamics (MD) simulations of electrophoretic transport of monovalent ions through field-st...
Equilibrium (HMD) and nonequilibrium molecular dynamics (NEMD) simulations were conducted to investi...
An alternating current nonequilibrium molecular dynamics (AC-NEMD) simulation technique is applied t...
Grand canonical ensemble Monte Carlo simulations are performed to investigate the concentrations of ...
Molecular dynamics (MD) simulations have become a powerful tool to study electroporation (EP) in ato...
International audienceUsing Brownian dynamics simulations, we investigate the effects of confinement...
The problem of predicting selective transport of ions through nano-pores from their structure in the...
AbstractA detailed picture of water and ion properties in small pores is important for understanding...
Molecular dynamics (MD) simulation was performed to investigate the ionic current through charged na...
Ion transport through nanoporous materials is of fundamental importance for the design and developme...