We report a new polymorph of lithium aluminum pyrophosphate, LiAlP2O7, discovered through a computationally guided synthetic exploration of the Li-Mg-Al-P-O phase field. The new polymorph formed at 973 K, and the crystal structure, solved by single-crystal X-ray diffraction, adopts the orthorhombic space group Cmcm with a = 5.1140(9) Å, b = 8.2042(13) Å, c = 11.565(3) Å, and V = 485.22(17) Å3. It has a three-dimensional framework structure that is different from that found in other LiMIIIP2O7 materials. It transforms to the known monoclinic form (space group P21) above ∼1023 K. Density functional theory (DFT) calculations show that the new polymorph is the most stable low-temperature structure for this composition among the seven known stru...
ABSTRACT: Solid electrolytes that are chemically stable and have a high ionic conductivity would dra...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
The focus of this Ph.D. thesis is to understand the lithium ion motion and to enhance the Li-ionic c...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Argyrodite is a key structure type for ion-transporting materials. Oxide argyrodites are largely une...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
With the goal of finding new lithium solid electrolytes by a combined computational-experimental met...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
Mechanical stiffness of oxide-type solid-electrolytes is a major drawback which has hindered their p...
A new polymorphic phase, Li5SiO4F, with Li+ ion dynamics that are structurally distinct from Li4SiO4...
Non-crystalline Li-ion solid electrolytes (SEs), such as lithium phosphorus oxynitride, can uniquely...
Non-crystalline Li-ion solid electrolytes (SEs), such as lithium phosphorus oxynitride, can uniquely...
Non-crystalline Li-ion solid electrolytes (SEs), such as lithium phosphorus oxynitride, can uniquely...
ABSTRACT: Solid electrolytes that are chemically stable and have a high ionic conductivity would dra...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
The focus of this Ph.D. thesis is to understand the lithium ion motion and to enhance the Li-ionic c...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Argyrodite is a key structure type for ion-transporting materials. Oxide argyrodites are largely une...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
With the goal of finding new lithium solid electrolytes by a combined computational-experimental met...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
Mechanical stiffness of oxide-type solid-electrolytes is a major drawback which has hindered their p...
A new polymorphic phase, Li5SiO4F, with Li+ ion dynamics that are structurally distinct from Li4SiO4...
Non-crystalline Li-ion solid electrolytes (SEs), such as lithium phosphorus oxynitride, can uniquely...
Non-crystalline Li-ion solid electrolytes (SEs), such as lithium phosphorus oxynitride, can uniquely...
Non-crystalline Li-ion solid electrolytes (SEs), such as lithium phosphorus oxynitride, can uniquely...
ABSTRACT: Solid electrolytes that are chemically stable and have a high ionic conductivity would dra...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
The focus of this Ph.D. thesis is to understand the lithium ion motion and to enhance the Li-ionic c...