The diffusion of salt ions and charged probe molecules in polyelectrolyte (PE) assemblies is often assumed to follow a theoretical hopping model, in which the diffusing ion hops between charged sites of chains based on electroneutrality. However, experimental verification of diffusing pathway at such microscales is difficult, and the corresponding molecular mechanisms remain elusive. In this study, we perform all-atom molecular dynamics simulations of salt diffusion in the PE assembly of poly(sodium-4-styrenesulfonate) (PSS) and poly(diallyldimethylammonium chloride) (PDAC). Besides the ion hopping mode, the diffusing trajectories are found to present common features of a jump process, that is, subjecting to PE relaxation, water pockets i...
Abstract: We present results of the hybrid Monte Carlo/molecular dynamics simulations of the osmotic...
We utilize atomistic molecular dynamics (MD) simulations to study local structural changes inside a ...
The combination of all-atom molecular dynamics simulations with differential scanning calorimetry (D...
The dynamics of ions and solvent molecules in polyelectrolyte desalination membranes is key to water...
In this study, we investigated the effect of polymer architecture on the ion dynamics and local stru...
Polyelectrolyte multilayers (PEMs) have significant potential in many technologies, yet the dynamics...
Structural, thermodynamic and transport properties have been calculated in concentrated non-aqueous ...
Monte Carlo simulations are used to study ion and polymer chain dynamic properties in a simplified l...
We investigate how ion–polymer complexation suppresses molecular motion in conventional polymer elec...
We introduce a coarse-grained approach for characterizing the long-timescale dynamics of ion diffusi...
The diffusion behavior of polyelectrolytes in dilute salt-free solution is studied through a hybrid ...
A Martini coarse-grained Molecular Dynamics (MD) model for the doped conducting polymer poly(3,4-eth...
Simulations implementing both Monte Carlo (MC) and molecular dynamics (MD) techniques were used to e...
We introduce a coarse-grained approach for characterizing the long-timescale dynamics of ion diffusi...
A semi-microscopic description of ionic transport in polyethylene oxide (PEO)-type electrolytes is p...
Abstract: We present results of the hybrid Monte Carlo/molecular dynamics simulations of the osmotic...
We utilize atomistic molecular dynamics (MD) simulations to study local structural changes inside a ...
The combination of all-atom molecular dynamics simulations with differential scanning calorimetry (D...
The dynamics of ions and solvent molecules in polyelectrolyte desalination membranes is key to water...
In this study, we investigated the effect of polymer architecture on the ion dynamics and local stru...
Polyelectrolyte multilayers (PEMs) have significant potential in many technologies, yet the dynamics...
Structural, thermodynamic and transport properties have been calculated in concentrated non-aqueous ...
Monte Carlo simulations are used to study ion and polymer chain dynamic properties in a simplified l...
We investigate how ion–polymer complexation suppresses molecular motion in conventional polymer elec...
We introduce a coarse-grained approach for characterizing the long-timescale dynamics of ion diffusi...
The diffusion behavior of polyelectrolytes in dilute salt-free solution is studied through a hybrid ...
A Martini coarse-grained Molecular Dynamics (MD) model for the doped conducting polymer poly(3,4-eth...
Simulations implementing both Monte Carlo (MC) and molecular dynamics (MD) techniques were used to e...
We introduce a coarse-grained approach for characterizing the long-timescale dynamics of ion diffusi...
A semi-microscopic description of ionic transport in polyethylene oxide (PEO)-type electrolytes is p...
Abstract: We present results of the hybrid Monte Carlo/molecular dynamics simulations of the osmotic...
We utilize atomistic molecular dynamics (MD) simulations to study local structural changes inside a ...
The combination of all-atom molecular dynamics simulations with differential scanning calorimetry (D...