Next-generation batteries based on divalent working ions have the potential to both reduce the cost of energy storage devices and increase performance. Examples of promising divalent systems include those based on Mg2+, Ca2+, and Zn2+ working ions. Development of such technologies is slow, however, in part due to the difficulty associated with divalent cation conduction in the solid state. Divalent ion conduction is especially challenging in insulating materials that would be useful as solid-state electrolytes or protecting layers on the surfaces of metal anodes. Furthermore, there are no reports of divalent cation conduction in insulating, inorganic materials at reasonable temperatures, prohibiting the development of structure–property rel...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Low ionic conductivity limits the development of NASICON-type LiZr<sub>2</sub>(PO<sub>4</sub>)<sub>3...
Next-generation batteries based on divalent working ions have the potential to both reduce the cost ...
Rechargeable Li-ion batteries revolutionized portable energy storage, but the fundamental limitation...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
This Review is focused on ion-transport mechanisms and fundamental properties of solid-state electro...
Recent theoretical work has uncovered that a body-centered-cubic (bcc) anion arrangement leads to hi...
This Review is focused on ion-transport mechanisms and fundamental properties of solid-state electro...
Multivalent-ion batteries (Mg-, Zn-, Ca-, and Al-ion) based on insertion chemistry like lithium-ion ...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Defects in crystals such as antisites generally lead-to the deterioration of the ionic conductivity ...
Recent studies on various solid-state electrolytes showed that while improvements to the ionic condu...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Low ionic conductivity limits the development of NASICON-type LiZr<sub>2</sub>(PO<sub>4</sub>)<sub>3...
Next-generation batteries based on divalent working ions have the potential to both reduce the cost ...
Rechargeable Li-ion batteries revolutionized portable energy storage, but the fundamental limitation...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
This Review is focused on ion-transport mechanisms and fundamental properties of solid-state electro...
Recent theoretical work has uncovered that a body-centered-cubic (bcc) anion arrangement leads to hi...
This Review is focused on ion-transport mechanisms and fundamental properties of solid-state electro...
Multivalent-ion batteries (Mg-, Zn-, Ca-, and Al-ion) based on insertion chemistry like lithium-ion ...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Defects in crystals such as antisites generally lead-to the deterioration of the ionic conductivity ...
Recent studies on various solid-state electrolytes showed that while improvements to the ionic condu...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Low ionic conductivity limits the development of NASICON-type LiZr<sub>2</sub>(PO<sub>4</sub>)<sub>3...