NEW FORMS OF MOLECULAR DYNAMICS AND SUPERIONIC CONDUCTORS

Author(s):  
John R. Ray ◽  
Aneesur Rahman ◽  
P. Vashishta
2015 ◽  
Vol 17 (48) ◽  
pp. 32547-32555 ◽  
Author(s):  
Ziheng Lu ◽  
Chi Chen ◽  
Zarah Medina Baiyee ◽  
Xin Chen ◽  
Chunming Niu ◽  
...  

The defect chemistry and the associated lithium transport in Li3OCl anti-perovskite superionic conductors are studied using molecular dynamics and density functional theory.


2019 ◽  
Vol 20 (5) ◽  
pp. 1123
Author(s):  
Aaron Byrne ◽  
Eduardo Bringa ◽  
Mario Del Pópolo ◽  
Jorge Kohanoff ◽  
Vanesa Galassi ◽  
...  

Efficient charge transport has been observed in iodine-doped, iodide-based room-temperature ionic liquids, yielding high ionic conductivity. To elucidate preferred mechanistic pathways for the iodide ( I − )-to-triiodide ( I 3 − ) exchange reactions, we have performed 10 ns reactive molecular-dynamics calculations in the liquid state for 1-butyl-3-methylimidazolium iodide ([BMIM][I]) at 450 to 750 K. Energy-barrier distributions for the iodine-swapping process were determined as a function of temperature, employing a charge-reassignment scheme drawn in part from electronic-structure calculations. Bond-exchange events were observed with rate-determining energy barriers ranging from ~0.19 to 0.23 ± 0.06 eV at 750 and 450 K, respectively, with an approximately Arrhenius temperature dependence for iodine self-diffusivity and reaction kinetics, although diffusion dominates/limits the bond-exchange events. This charge transfer is not dissimilar in energetics to those in solid-state superionic conductors.


2017 ◽  
Vol 5 (26) ◽  
pp. 13373-13381 ◽  
Author(s):  
Hong Fang ◽  
Shuo Wang ◽  
Junyi Liu ◽  
Qiang Sun ◽  
Puru Jena

Molecular dynamics simulations show Li-ion diffusion in the newly invented antiperovskite Li3OBH4. The blue trajectories show how the Li+ ions run through the lattice of vibrational oxygen (red). The white trajectories show the fast rotational motion of the BH4− superhalogen ions.


1988 ◽  
Vol 135 ◽  
Author(s):  
P. Vashishta ◽  
José P. Rino ◽  
Rajiv K. Kalia

AbstractStructural properties, single-particle dynamics, and the charge transport are studied in superionic conductor Ag2Se using the molecular dynamics (MD) technique. The calculations are based on a model of interionic potentials in which ions interact through Coulomb interaction, steric repulsion and charge-dipole interaction due to the large electronic polarizability of the selenium ions. Structural and dynamics correlations are studied at five temperatures in the superionic phase. Among the structural correlations the results are presented for partial pair correlation function, coordination numbers, bond angle distributions and wave-vector dependence of the Bragg intensities. Detailed comparison with neutron and x-ray single crystal diffraction experiments. The calculated temperature dependence of the self-diffusion constant of silver is in good agreement with the tracer diffusion measurements. The spectra of velocity autocorrelation functions and the frequency dependent ionic conductivity are calculated. The Haven's ratio is also in good agreement with experiments.Effective interatomic potentials consisting of two-body (steric effect, charge transfer and charge-dipole interactions) and three-body covalent forces are proposed for GeSe2. Using these interaction potentials in MD simulations, the nature of short-range and medium-range order is investigated in glassy and molten GeSe2. All the features in the static structure factor, S(q), including the first sharp diffraction peak (FSDP), are in good agreement with experiments. The FSDP arises from Ge-Ge and Ge-Se correlations between 4-8Å, and the anomalous decrease in its height on cooling is due to frustration enhanced by the increased density.


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