Non-crystalline solid materials have attracted growing attention in energy storage for their desirable properties such as ionic conductivity, stability, and processability. However, compared to bulk crystalline materials, fundamental understanding of these highly complex metastable systems is hindered by the scale limitations of density functional theory (DFT) calculations and resolution limitations of experimental methods. To fill the knowledge gap and guide the rational design of amorphous battery materials and interfaces, we present a molecular dynamics (MD) framework based on machine-learned interatomic potentials trained on the fly to study the amorphous solid electrolyte Li3PS4 and its protective coating, amorphous Li3B11O18. The use ...
Understanding the nature of ion transfer at the interface between Li metal and solid electrolytes (S...
All solid-state batteries provide many safety advantages over traditional lithium-ion batteries by r...
We introduce an adhesion parameter that enables rapid screening for materials interfaces with high a...
Non-crystalline solid materials have attracted growing attention in energy storage for their desirab...
All-solid-state batteries have attracted significant research interest for potentially providing hig...
The need for sustainable, economical, and high energy density rechargeable batteries are mandatory t...
Sulfide glasses, with high room-temperature Li-ion conductivities, are a promising class of solid-st...
Energy storage technologies that can meet the unprecedented demands of a sustainable energy system b...
Lithium-sulfur batteries (LSBs) are among the most promising energy storage technologies due to the ...
To make a lithium-sulfur (Li-S) battery practical, not only high gravimetric energy capacity is impo...
All-solid-state batteries show its great potential for being the next-generation source of clean ene...
A sustainable progress in the development of e.g. mobile electronic devices and electrical vehicles ...
Developing all-solid-state lithium batteries with inorganic solid electrolytes can potentially addre...
Solid-state electrolytes, or superionic conductors, are a promising method of energy storage as a sa...
Lithium metal batteries (LMBs) are potential candidates for powering portable electronic devices and...
Understanding the nature of ion transfer at the interface between Li metal and solid electrolytes (S...
All solid-state batteries provide many safety advantages over traditional lithium-ion batteries by r...
We introduce an adhesion parameter that enables rapid screening for materials interfaces with high a...
Non-crystalline solid materials have attracted growing attention in energy storage for their desirab...
All-solid-state batteries have attracted significant research interest for potentially providing hig...
The need for sustainable, economical, and high energy density rechargeable batteries are mandatory t...
Sulfide glasses, with high room-temperature Li-ion conductivities, are a promising class of solid-st...
Energy storage technologies that can meet the unprecedented demands of a sustainable energy system b...
Lithium-sulfur batteries (LSBs) are among the most promising energy storage technologies due to the ...
To make a lithium-sulfur (Li-S) battery practical, not only high gravimetric energy capacity is impo...
All-solid-state batteries show its great potential for being the next-generation source of clean ene...
A sustainable progress in the development of e.g. mobile electronic devices and electrical vehicles ...
Developing all-solid-state lithium batteries with inorganic solid electrolytes can potentially addre...
Solid-state electrolytes, or superionic conductors, are a promising method of energy storage as a sa...
Lithium metal batteries (LMBs) are potential candidates for powering portable electronic devices and...
Understanding the nature of ion transfer at the interface between Li metal and solid electrolytes (S...
All solid-state batteries provide many safety advantages over traditional lithium-ion batteries by r...
We introduce an adhesion parameter that enables rapid screening for materials interfaces with high a...