Monte Carlo simulations are used to study ion and polymer chain dynamic properties in a simplified lattice model with only one species of mobile ions. The ions interact attractively with specific beads in the host chains, while polymer beads repel each other. Cross linking of chains by the ions reduces chain mobilities which in turn suppresses ionic diffusion. Diffusion constants for ions and chains as a function of temperature follow the Vogel-Tammann-Fulcher (VTF) law with a common VTF temperature at low ion concentration, but both decouple at higher concentrations, in agreement with experimental observations. Our model allows us to introduce pressure as an independent variable through calculations of the equation of state using the quasi...
The diffusion of salt ions and charged probe molecules in polyelectrolyte (PE) assemblies is often a...
We performed long-time all-atom molecular dynamics simulations of cationic polymerized ionic liquids...
We employ atomistic mol. dynamics (MD), in tandem with exptl. studies, to elucidate the mechanisms o...
Ion-conducting glasses and polymer systems show several characteristic peculiarities in their compos...
Simulations implementing both Monte Carlo (MC) and molecular dynamics (MD) techniques were used to e...
Fast ion conduction is known to occur in many solid materials, allowing us to perform fundamental st...
This work is devoted to transport processes in dense polymer systems, with emphasis on ion transpor...
Diffusion of ions through a fluctuating polymeric host is studied both by Monte Carlo simulation of ...
We investigate how ion–polymer complexation suppresses molecular motion in conventional polymer elec...
Stochastic semi-microscopic models for glassy and polymer ion conductors provide a framework for und...
A semi-microscopic description of ionic transport in polyethylene oxide (PEO)-type electrolytes is p...
We introduce a coarse-grained approach for characterizing the long-timescale dynamics of ion diffusi...
We introduce a coarse-grained approach for characterizing the long-timescale dynamics of ion diffusi...
Thesis: S.B., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from PDF...
Modern theories of polymer solutions are highly successful in describing the physical properties of ...
The diffusion of salt ions and charged probe molecules in polyelectrolyte (PE) assemblies is often a...
We performed long-time all-atom molecular dynamics simulations of cationic polymerized ionic liquids...
We employ atomistic mol. dynamics (MD), in tandem with exptl. studies, to elucidate the mechanisms o...
Ion-conducting glasses and polymer systems show several characteristic peculiarities in their compos...
Simulations implementing both Monte Carlo (MC) and molecular dynamics (MD) techniques were used to e...
Fast ion conduction is known to occur in many solid materials, allowing us to perform fundamental st...
This work is devoted to transport processes in dense polymer systems, with emphasis on ion transpor...
Diffusion of ions through a fluctuating polymeric host is studied both by Monte Carlo simulation of ...
We investigate how ion–polymer complexation suppresses molecular motion in conventional polymer elec...
Stochastic semi-microscopic models for glassy and polymer ion conductors provide a framework for und...
A semi-microscopic description of ionic transport in polyethylene oxide (PEO)-type electrolytes is p...
We introduce a coarse-grained approach for characterizing the long-timescale dynamics of ion diffusi...
We introduce a coarse-grained approach for characterizing the long-timescale dynamics of ion diffusi...
Thesis: S.B., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from PDF...
Modern theories of polymer solutions are highly successful in describing the physical properties of ...
The diffusion of salt ions and charged probe molecules in polyelectrolyte (PE) assemblies is often a...
We performed long-time all-atom molecular dynamics simulations of cationic polymerized ionic liquids...
We employ atomistic mol. dynamics (MD), in tandem with exptl. studies, to elucidate the mechanisms o...