Finding solid-state electrolytes with high ionic conductivity near room temperature is an important prerequisite for developing all-solid-state electrochemical batteries. Here, we investigate the effects of point defects (vacancies) and biaxial stress on the superionic properties of fast-ion conductors (represented by the archetypal compounds CaF2, Li-rich antiperovskite Li3OCl, and AgI) by using classical molecular dynamics and first-principles simulation methods. We find that the critical superionic temperature of all analyzed families of fast-ion conductors can be reduced by several hundreds of degrees through the application of relatively small biaxial stresses (|σ| ≤ 1 GPa) on slightly defective samples (cv ∼ 1%). In AgI, we show that ...
Solid-state cooling is an energy-efficient and scalable refrigeration technology that exploits the a...
Solid-state electrolytes, or superionic conductors, are a promising method of energy storage as a sa...
Superionic solid electrolytes have widespread use in energy devices, but the fundamental motivations...
Ionic transport in solids is a very important process for many technological applications like energ...
Mechanocaloric materials experience a change in temperature when a mechanical stress is applied on t...
AbstractWe analyse the effects of applying an electric field on the critical temperature at which su...
We analyse the effects of applying an electric field on the critical temperature at which superionic...
We analyse the effects of applying an electric field on the critical temperature at which superionic...
We investigate phase stability and ionic transport mechanisms in two recently discovered superionic ...
Lithium argyrodite superionic conductors are currently being investigated as solid electrolytes for ...
Lithium argyrodite superionic conductors are currently being investigated as solid electrolytes for ...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
AbstractWe analyse the effects of applying an electric field on the critical temperature at which su...
In the pursuit of urgently needed, energy dense solid-state batteries for electric vehicle and porta...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Solid-state cooling is an energy-efficient and scalable refrigeration technology that exploits the a...
Solid-state electrolytes, or superionic conductors, are a promising method of energy storage as a sa...
Superionic solid electrolytes have widespread use in energy devices, but the fundamental motivations...
Ionic transport in solids is a very important process for many technological applications like energ...
Mechanocaloric materials experience a change in temperature when a mechanical stress is applied on t...
AbstractWe analyse the effects of applying an electric field on the critical temperature at which su...
We analyse the effects of applying an electric field on the critical temperature at which superionic...
We analyse the effects of applying an electric field on the critical temperature at which superionic...
We investigate phase stability and ionic transport mechanisms in two recently discovered superionic ...
Lithium argyrodite superionic conductors are currently being investigated as solid electrolytes for ...
Lithium argyrodite superionic conductors are currently being investigated as solid electrolytes for ...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
AbstractWe analyse the effects of applying an electric field on the critical temperature at which su...
In the pursuit of urgently needed, energy dense solid-state batteries for electric vehicle and porta...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Solid-state cooling is an energy-efficient and scalable refrigeration technology that exploits the a...
Solid-state electrolytes, or superionic conductors, are a promising method of energy storage as a sa...
Superionic solid electrolytes have widespread use in energy devices, but the fundamental motivations...