The discovery of the lithium superionic conductor Li10GeP2S12 (LGPS) has led to significant research activity on solid electrolytes for high-performance solid-state batteries. Despite LGPS exhibiting a remarkably high room-temperature Li-ion conductivity, comparable to that of the liquid electrolytes used in current Li-ion batteries, nanoscale effects in this material have not been fully explored. Here, we predict that nanosizing of LGPS can be used to further enhance its Li-ion conductivity. By utilizing state-of-the-art nanoscale modeling techniques, our results reveal significant nanosizing effects with the Li-ion conductivity of LGPS increasing with decreasing particle volume. These features are due to a fundamental change from a primar...
TiO<sub>2</sub> nanoparticles are the important components of nanostructured electrodes for Li-ion b...
Portable energy storage is of critical importance for the advance of renewable energy storage, consu...
Technology for ion conduction in Li2S nanostructure has attracted considerable interest for achievin...
(~175 words) By nanostructuring the previously reported lithium ion conductor Li3PS4, we demonstrate...
The electrochemical properties and performances of lithium-ion batteries are primarily governed by t...
Electrolytes with high ionic conductivity, lithium transference numbers, and sufficient mechanical s...
Lithium-ion-conducting solid electrolytes hold promise for enabling high-energy battery chemistries ...
The electrochemical properties and performances of lithium-ion batteries are primarily governed by t...
Li10GeP2S12 (LGPS) is a recently discovered lithium super ionic conductor.[1] This new material has ...
A combination of high ionic conductivity and facile processing suggest that sulfide- based material...
Solid-state ion conductors are gaining increasing importance, among other ion conductors, to enable ...
Solid-state ion conductors are gaining increasing importance, among other ion conductors, to enable ...
Solid-state ion conductors are gaining increasing importance, among other ion conductors, to enable ...
Upon nano-sizing of insertion compounds several significant changes in Li-insertion behavior have be...
The growth and proliferation of lithium (Li) dendrites during cell recharge are currently unavoidabl...
TiO<sub>2</sub> nanoparticles are the important components of nanostructured electrodes for Li-ion b...
Portable energy storage is of critical importance for the advance of renewable energy storage, consu...
Technology for ion conduction in Li2S nanostructure has attracted considerable interest for achievin...
(~175 words) By nanostructuring the previously reported lithium ion conductor Li3PS4, we demonstrate...
The electrochemical properties and performances of lithium-ion batteries are primarily governed by t...
Electrolytes with high ionic conductivity, lithium transference numbers, and sufficient mechanical s...
Lithium-ion-conducting solid electrolytes hold promise for enabling high-energy battery chemistries ...
The electrochemical properties and performances of lithium-ion batteries are primarily governed by t...
Li10GeP2S12 (LGPS) is a recently discovered lithium super ionic conductor.[1] This new material has ...
A combination of high ionic conductivity and facile processing suggest that sulfide- based material...
Solid-state ion conductors are gaining increasing importance, among other ion conductors, to enable ...
Solid-state ion conductors are gaining increasing importance, among other ion conductors, to enable ...
Solid-state ion conductors are gaining increasing importance, among other ion conductors, to enable ...
Upon nano-sizing of insertion compounds several significant changes in Li-insertion behavior have be...
The growth and proliferation of lithium (Li) dendrites during cell recharge are currently unavoidabl...
TiO<sub>2</sub> nanoparticles are the important components of nanostructured electrodes for Li-ion b...
Portable energy storage is of critical importance for the advance of renewable energy storage, consu...
Technology for ion conduction in Li2S nanostructure has attracted considerable interest for achievin...