© 2017 American Chemical Society. We illustrate the effects of chain connectivity on the solvation energy of ions immersed in polymer liquids by developing a new coarse-grained molecular dynamics simulation. Our theory accounts for the dielectric response of the polymers through the connection of dipolar, monomeric units with nonlinear springs. In stark contrast to the standard Born solvation energy of ions, our results depend substantially on the chain length of the polymers. We also demonstrate the marked difference in the solvation energies of the ions immersed in non-polymeric particle mixtures, single-component polymers, polymer blends, and block copolymers. Thus, we suggest that the chain architecture of polymers is a key factor in io...
We present the results of atomistic molecular dynamics simulations with regard to specific ion effec...
ABSTRACT: Brushes of end-grafted, polar polymer chains in a good, nonpolar solvent are studied via m...
Simulations implementing both Monte Carlo (MC) and molecular dynamics (MD) techniques were used to e...
We illustrate the effects of chain connectivity on the solvation energy of ions immersed in polymer ...
We studied the thermodynamic properties of ion solvation in polymer blends and block copolymer melts...
The study of the coupling between the conformational properties of a polyelectrolyte chain and the d...
© 2018 American Chemical Society. Electrolytes often involve the spatially varying dielectric respon...
We study the solvation of ion pairs in diblock copolymer melts. Our theory accounts for the size of ...
Modern theories of polymer solutions are highly successful in describing the physical properties of ...
We performed long-time all-atom molecular dynamics simulations of cationic polymerized ionic liquids...
In this work, we use computer simulations to demonstrate that there may be limits to which polymer p...
The thermodynamic phase behavior of charged polymers is a crucial property underlying their role in ...
While ion transport in solid polymer electrolytes (SPEs) has been explored for decades, there still ...
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 present the results of atomistic molecular dynamics simulations with regard to specific ion effec...
ABSTRACT: Brushes of end-grafted, polar polymer chains in a good, nonpolar solvent are studied via m...
Simulations implementing both Monte Carlo (MC) and molecular dynamics (MD) techniques were used to e...
We illustrate the effects of chain connectivity on the solvation energy of ions immersed in polymer ...
We studied the thermodynamic properties of ion solvation in polymer blends and block copolymer melts...
The study of the coupling between the conformational properties of a polyelectrolyte chain and the d...
© 2018 American Chemical Society. Electrolytes often involve the spatially varying dielectric respon...
We study the solvation of ion pairs in diblock copolymer melts. Our theory accounts for the size of ...
Modern theories of polymer solutions are highly successful in describing the physical properties of ...
We performed long-time all-atom molecular dynamics simulations of cationic polymerized ionic liquids...
In this work, we use computer simulations to demonstrate that there may be limits to which polymer p...
The thermodynamic phase behavior of charged polymers is a crucial property underlying their role in ...
While ion transport in solid polymer electrolytes (SPEs) has been explored for decades, there still ...
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 present the results of atomistic molecular dynamics simulations with regard to specific ion effec...
ABSTRACT: Brushes of end-grafted, polar polymer chains in a good, nonpolar solvent are studied via m...
Simulations implementing both Monte Carlo (MC) and molecular dynamics (MD) techniques were used to e...