In this article fully atomistic Molecular Dynamics simulations were employed to study the behaviour of electrolyte salts (NaPF6, NaBF4, and NaTFSI) and different organic solvents (PC, EC, and EMC) in cylindrical carbon nanotubes, in order to reveal the storage mechanism. Organic solutions at 1 M concentrations were considered in bulk reservoir solutions, at the operational condition of sodium ion batteries. The effects of the solvents, nanotube diameter, and different anions (PF6 -, BF4-, and TFSI-) are quantified by calculating the number of ions inside the nanotubes, solvation number and radial distribution functions. The solvent, anion and cylindrical nanoconfinement can influence the organic electrolyte solution structure
The currently emerging sodium-ion battery technology is in need of an optimized standard organic sol...
We use molecular dynamics simulations and the adaptive biasing force method to evaluate the potentia...
We studied dynamic and structural properties of two lithium conducting salts in the aprotic organic ...
In this article fully atomistic Molecular Dynamics simulations were employed to study the behaviour ...
In this study fully atomistic grand canonical Monte Carlo (GCMC) simulations have been employed to s...
Na ion batteries (NIBs) are considered as a promising low cost and sustainable energy storage techno...
Molecular dynamics simulations have been employed to study the structural properties of non-aqueous ...
We report an effective approach of utilizing multiwalled carbon nanotubes (MWCNTs) as an active anod...
The behavior of molecules in nanopores and at nanoscale interfaces are of fundamental importance in ...
We consider the effects of salt (sodium iodide) on pristine carbon nanotube (CNT) dispersions in an ...
Equilibrium molecular dynamics has been used to investigate ion and water distributions of 0.5 M sod...
In this paper, we use applied mathematical modelling to investigate the transportation of ions insid...
Understanding the structure of aqueous electrolytes at interfaces is essential for predicting and op...
ABSTRACT: We investigated the structure of liquid water around cations (Na+) and anions (Cl−) confin...
Classical molecular dynamics (MD) simulations and M06-2X hybrid density functional theory calculatio...
The currently emerging sodium-ion battery technology is in need of an optimized standard organic sol...
We use molecular dynamics simulations and the adaptive biasing force method to evaluate the potentia...
We studied dynamic and structural properties of two lithium conducting salts in the aprotic organic ...
In this article fully atomistic Molecular Dynamics simulations were employed to study the behaviour ...
In this study fully atomistic grand canonical Monte Carlo (GCMC) simulations have been employed to s...
Na ion batteries (NIBs) are considered as a promising low cost and sustainable energy storage techno...
Molecular dynamics simulations have been employed to study the structural properties of non-aqueous ...
We report an effective approach of utilizing multiwalled carbon nanotubes (MWCNTs) as an active anod...
The behavior of molecules in nanopores and at nanoscale interfaces are of fundamental importance in ...
We consider the effects of salt (sodium iodide) on pristine carbon nanotube (CNT) dispersions in an ...
Equilibrium molecular dynamics has been used to investigate ion and water distributions of 0.5 M sod...
In this paper, we use applied mathematical modelling to investigate the transportation of ions insid...
Understanding the structure of aqueous electrolytes at interfaces is essential for predicting and op...
ABSTRACT: We investigated the structure of liquid water around cations (Na+) and anions (Cl−) confin...
Classical molecular dynamics (MD) simulations and M06-2X hybrid density functional theory calculatio...
The currently emerging sodium-ion battery technology is in need of an optimized standard organic sol...
We use molecular dynamics simulations and the adaptive biasing force method to evaluate the potentia...
We studied dynamic and structural properties of two lithium conducting salts in the aprotic organic ...