Neutral and charged interfaces between molten alkali carbonates M2CO3 (M = Li, Na, and K) and planar solid walls have been investigated by molecular dynamics based on a rigid-ions force field. Simulations cover the temperature range 1200 K ≤ T ≤ 1500 K at a moderate (∼15 kbar) overpressure to compensate for the slight overestimate of the system volume by the force field model. The results provide an intriguing view of the interplay among ion packing, oscillating screening, anisotropic correlations, and ion dynamics at the interface. The mass and charge density profiles display prominent peaks at contact, and tend to their constant bulk value through several oscillations, whose amplitude decays exponentially moving away from the interface. O...
We report the results of constant-potential molecular dynamics simulations of the double layer inter...
Understanding the properties of the solid electrolyte interphase (SEI) of lithium batteries is impor...
The solid-liquid interface represents systems of great and diverse technological importance. The int...
Neutral and charged interfaces between molten alkali carbonates M<sub>2</sub>CO<sub>3</sub> (M = Li,...
The properties and structure of relevant interfaces involving molten alkali carbonates are studied u...
The properties and structure of relevant interfaces involving molten alkali carbonates are studied u...
The interplay of heat flow and electrification phenomena at solid/fluid interfaces gives origin to i...
Molecular dynamics (MD) simulations were performed on the interaction of two solid surfaces, namely ...
International audienceWe use molecular dynamics simulations to study the thermodynamics, structure, ...
Conductivity of molten alkali metal chlorides is the foundation of molten-salt electrolysis process....
Molten chloride salts are the main components in liquid metal batteries, high-temperature heat stora...
Because of their remarkable physicochemical properties carbonate melts receive an increasing interes...
The crystal-melt interfaces of pure KCl and LiCl crystals with (Li,K)Cl melts of various composition...
First-principle molecular dynamics (FPMD) calculations have been performed to evaluate the physical ...
Hypothesis: A reliable modelling approach is required for simultaneous characterisation of static an...
We report the results of constant-potential molecular dynamics simulations of the double layer inter...
Understanding the properties of the solid electrolyte interphase (SEI) of lithium batteries is impor...
The solid-liquid interface represents systems of great and diverse technological importance. The int...
Neutral and charged interfaces between molten alkali carbonates M<sub>2</sub>CO<sub>3</sub> (M = Li,...
The properties and structure of relevant interfaces involving molten alkali carbonates are studied u...
The properties and structure of relevant interfaces involving molten alkali carbonates are studied u...
The interplay of heat flow and electrification phenomena at solid/fluid interfaces gives origin to i...
Molecular dynamics (MD) simulations were performed on the interaction of two solid surfaces, namely ...
International audienceWe use molecular dynamics simulations to study the thermodynamics, structure, ...
Conductivity of molten alkali metal chlorides is the foundation of molten-salt electrolysis process....
Molten chloride salts are the main components in liquid metal batteries, high-temperature heat stora...
Because of their remarkable physicochemical properties carbonate melts receive an increasing interes...
The crystal-melt interfaces of pure KCl and LiCl crystals with (Li,K)Cl melts of various composition...
First-principle molecular dynamics (FPMD) calculations have been performed to evaluate the physical ...
Hypothesis: A reliable modelling approach is required for simultaneous characterisation of static an...
We report the results of constant-potential molecular dynamics simulations of the double layer inter...
Understanding the properties of the solid electrolyte interphase (SEI) of lithium batteries is impor...
The solid-liquid interface represents systems of great and diverse technological importance. The int...