Recently, a number of experiments have demonstrated that addition of ceramics with nanoscale dimensions can lead to substantial improvements in the low-temperature conductivity of the polymeric materials. However, the origin of such behaviors and, more generally, the manner by which nanoscale fillers impact the ion mobilities remain unresolved. In this communication, we report the results of atomistic molecular dynamics simulations which used multibody polarizable force fields to study lithium ion diffusivities in an amorphous poly(ethylene-oxide) (PEO) melt containing well-dispersed TiO<sub>2</sub> nanoparticles. We observed that the lithium ion diffusivities decrease with increased particle loading. Our analysis suggests that the ion mob...
Electrolytes with high ionic conductivity, lithium transference numbers, and sufficient mechanical s...
We investigate the effect of various spherical nanoparticles in a polymer matrix on dispersion, chai...
We herein report an all-atom molecular dynamics study on the role of solvent polarity for Li+ diffus...
Using all atom molecular dynamics and trajectory-extending kinetic Monte Carlo simulations, we study...
Recent studies have shown that composite polymer electrolytes, formed by dispersing nanosized cerami...
Recent studies have shown that composite polymer electrolytes, formed by dispersing nanosized cerami...
This study focuses on the effect of anatase titania acting as nanofiller on the relaxation dynamics ...
Understanding the ion transport mechanism in nanocomposite solid polymer electrolytes is necessary t...
Understanding the ionic diffusion mechanism in polymer electrolytes is critical to the development o...
We investigate the influence of nanofiller surface chemistry and ion content on the conductivity of ...
Nano-particle oxide fillers including TiO2, SiO2 and Al2O3 have previously been shown to have a sign...
The predictive design of flexible and solvent-free polymer electrolytes for solid-state batteries re...
Nanocomposite electrolytes of a fully amorphous trifunctional polyether (3PEG) and poly- (methylene ...
We investigate how ion–polymer complexation suppresses molecular motion in conventional polymer elec...
The effect of nanoparticle shape on the ionic conductivity and thermal properties of solid polymer e...
Electrolytes with high ionic conductivity, lithium transference numbers, and sufficient mechanical s...
We investigate the effect of various spherical nanoparticles in a polymer matrix on dispersion, chai...
We herein report an all-atom molecular dynamics study on the role of solvent polarity for Li+ diffus...
Using all atom molecular dynamics and trajectory-extending kinetic Monte Carlo simulations, we study...
Recent studies have shown that composite polymer electrolytes, formed by dispersing nanosized cerami...
Recent studies have shown that composite polymer electrolytes, formed by dispersing nanosized cerami...
This study focuses on the effect of anatase titania acting as nanofiller on the relaxation dynamics ...
Understanding the ion transport mechanism in nanocomposite solid polymer electrolytes is necessary t...
Understanding the ionic diffusion mechanism in polymer electrolytes is critical to the development o...
We investigate the influence of nanofiller surface chemistry and ion content on the conductivity of ...
Nano-particle oxide fillers including TiO2, SiO2 and Al2O3 have previously been shown to have a sign...
The predictive design of flexible and solvent-free polymer electrolytes for solid-state batteries re...
Nanocomposite electrolytes of a fully amorphous trifunctional polyether (3PEG) and poly- (methylene ...
We investigate how ion–polymer complexation suppresses molecular motion in conventional polymer elec...
The effect of nanoparticle shape on the ionic conductivity and thermal properties of solid polymer e...
Electrolytes with high ionic conductivity, lithium transference numbers, and sufficient mechanical s...
We investigate the effect of various spherical nanoparticles in a polymer matrix on dispersion, chai...
We herein report an all-atom molecular dynamics study on the role of solvent polarity for Li+ diffus...