We report on the dynamic and structural characterization of lithium metasilicate Li2SiO3, a network-forming ionic glass, by means of molecular dynamics simulations. The system is characterized by a network of SiO4 tetrahedra disrupted by Li ions which diffuse through the network. Measures of mean square displacement and the diffusion constant of Si and O atoms allow us to identify the mode-coupling temperature, Tc ≈ 1500 K. At a much lower temperature, a change in the slope of the specific volume versus temperature singles out the glass transition at Tg ≈ 1000 K, the temperature below which the system goes out of equilibrium. We find signatures of both dynamical temperatures in structural order parameters related to the orientation of the t...
To examine the dynamical origin of high ionic conductivity of (Li<sub>2</sub>S)<sub>70</sub>(P<sub>2...
We report results of a simulation of the phase transitions in CsLiSO4. These are based on our previo...
We use Li-7 NMR to study the ionic jump motion in ternary 0.5Li(2)S + 0.5[(1-x)GeS2+xGeO(2)] glassy ...
Surprisingly, there is not a complete and general working theory for the ionic conduction on structu...
In this work we present the structural properties of lithium tetrasilicate glass (LS4) obtained by c...
International audienceIn this work we present the structural properties of lithium tetrasilicate gla...
From the results of molecular dynamic simulations of lithium metasilicate glass - at temperatures ab...
International audienceIn this work we present the structural properties of lithium tetrasilicate gla...
International audienceIn this work we present the structural properties of lithium tetrasilicate gla...
International audienceIn this work we present the structural properties of lithium tetrasilicate gla...
18 p.We collect and critically analyze extensive literature data, including our own, on three import...
International audienceIn this work we present the structural properties of lithium tetrasilicate gla...
Understanding the crystallization mechanism in silica-based materials is of paramount importance to ...
We present a low-temperature structural model for lithium imide (Li[subscript 2]NH) that is consiste...
The structure of Li2O · 2SiO2 (LS2) glass was investigated as a function of pressure and temperature...
To examine the dynamical origin of high ionic conductivity of (Li<sub>2</sub>S)<sub>70</sub>(P<sub>2...
We report results of a simulation of the phase transitions in CsLiSO4. These are based on our previo...
We use Li-7 NMR to study the ionic jump motion in ternary 0.5Li(2)S + 0.5[(1-x)GeS2+xGeO(2)] glassy ...
Surprisingly, there is not a complete and general working theory for the ionic conduction on structu...
In this work we present the structural properties of lithium tetrasilicate glass (LS4) obtained by c...
International audienceIn this work we present the structural properties of lithium tetrasilicate gla...
From the results of molecular dynamic simulations of lithium metasilicate glass - at temperatures ab...
International audienceIn this work we present the structural properties of lithium tetrasilicate gla...
International audienceIn this work we present the structural properties of lithium tetrasilicate gla...
International audienceIn this work we present the structural properties of lithium tetrasilicate gla...
18 p.We collect and critically analyze extensive literature data, including our own, on three import...
International audienceIn this work we present the structural properties of lithium tetrasilicate gla...
Understanding the crystallization mechanism in silica-based materials is of paramount importance to ...
We present a low-temperature structural model for lithium imide (Li[subscript 2]NH) that is consiste...
The structure of Li2O · 2SiO2 (LS2) glass was investigated as a function of pressure and temperature...
To examine the dynamical origin of high ionic conductivity of (Li<sub>2</sub>S)<sub>70</sub>(P<sub>2...
We report results of a simulation of the phase transitions in CsLiSO4. These are based on our previo...
We use Li-7 NMR to study the ionic jump motion in ternary 0.5Li(2)S + 0.5[(1-x)GeS2+xGeO(2)] glassy ...