The use of solid-state electrolytes to provide safer, next-generation rechargeable batteries is becoming more feasible as materials with greater stability and higher ionic diffusion coefficients are designed. However, accurate determination of diffusion coefficients in solids is problematic and reliable calculations are highly sought-after to understand how their structure can be modified to improve their performance. In this paper we compare diffusion coefficients calculated using nonequilibrium and equilibrium ab initio molecular dynamics simulations for highly diffusive solid-state electrolytes, to demonstrate the accuracy that can be obtained. Moreover, we show that ab initio nonequilibrium molecular dynamics can be used to determine di...
Lithium-rich oxychloride antiperovskites are promising solid electrolytes for enabling next-generati...
The composition, structure, and the formation mechanism of the solid–electrolyte interphase (SEI) in...
The spontaneously formed passivation layer, the solid electrolyte interphase (SEI) between the elect...
Molecular dynamics simulations are a powerful tool to study diffusion processes in battery electroly...
Using density functional theory molecular dynamics simulations, the origin of the Li-ion conductivit...
Molecular dynamics simulations are a powerful tool to study diffusion processes in battery electroly...
Developing all-solid-state lithium batteries with inorganic solid electrolytes can potentially addre...
Developing all-solid-state lithium batteries with inorganic solid electrolytes can potentially addre...
The color-diffusion algorithm is applied to ab initio molecular dynamics simulation of hexagonal LiB...
Thesis: S.M., Massachusetts Institute of Technology, Department of Materials Science and Engineering...
The Li-ion batteries within the consumer electronics used in our everyday life suffer from well-know...
Recently it was found that nanoporous \u3b2-Li3PS4 (Liu et al., 2013), has an ionic conductivity thr...
We investigate isotope effects of lithium-ion diffusion in Lithium-ion conductors using ab initio co...
The color-diffusion algorithm is applied to ab initio molecular dynamics simulation of hexagonal LiB...
Lithium-ion mobility in solid-state systems is an important field with significance for a range of t...
Lithium-rich oxychloride antiperovskites are promising solid electrolytes for enabling next-generati...
The composition, structure, and the formation mechanism of the solid–electrolyte interphase (SEI) in...
The spontaneously formed passivation layer, the solid electrolyte interphase (SEI) between the elect...
Molecular dynamics simulations are a powerful tool to study diffusion processes in battery electroly...
Using density functional theory molecular dynamics simulations, the origin of the Li-ion conductivit...
Molecular dynamics simulations are a powerful tool to study diffusion processes in battery electroly...
Developing all-solid-state lithium batteries with inorganic solid electrolytes can potentially addre...
Developing all-solid-state lithium batteries with inorganic solid electrolytes can potentially addre...
The color-diffusion algorithm is applied to ab initio molecular dynamics simulation of hexagonal LiB...
Thesis: S.M., Massachusetts Institute of Technology, Department of Materials Science and Engineering...
The Li-ion batteries within the consumer electronics used in our everyday life suffer from well-know...
Recently it was found that nanoporous \u3b2-Li3PS4 (Liu et al., 2013), has an ionic conductivity thr...
We investigate isotope effects of lithium-ion diffusion in Lithium-ion conductors using ab initio co...
The color-diffusion algorithm is applied to ab initio molecular dynamics simulation of hexagonal LiB...
Lithium-ion mobility in solid-state systems is an important field with significance for a range of t...
Lithium-rich oxychloride antiperovskites are promising solid electrolytes for enabling next-generati...
The composition, structure, and the formation mechanism of the solid–electrolyte interphase (SEI) in...
The spontaneously formed passivation layer, the solid electrolyte interphase (SEI) between the elect...