Divalent ion-conducting solid electrolytes with NASICON-type three-dimensional network structures (MxHf1−x)4/(4−2x)Nb(PO4)3 (M = Ni, Mg, Ca, Sr) were successfully developed by introducing M2+ cations into HfNb(PO4)3 solids. The presence of high-valence cations such as Hf4+, Nb5+, and P5+ in the structures effectively reduced the electrostatic interaction between the conducting M2+ cations and the surrounding oxide anions, enabling the M2+ cations to migrate smoothly in the rigid crystal lattice. The relationship between the cation conductivity in NASICON-type solids and the ionic radius of the migrating divalent cation species was also clarified by taking into account the relative sizes of the conduction pathways in the structures.</p
A novel inorganic solid electrolyte with a layered framework structure stable up to 1043 K, Na-14.5[...
Five conductors of three structure types were discovered which, as solids, can transport Na(+) or K(...
Recent studies on various solid-state electrolytes showed that while improvements to the ionic condu...
Divalent ion-conducting solid electrolytes with NASICON-type three-dimensional network structures (M...
Divalent calcium ion conducting solid electrolyte with a three dimensional NASICON-type structure, (...
Na Super Ionic Conductor (NASICON) materials are an important class of solid-state electrolytes owin...
In the search for novel sodium-ion conductors to be used in batteries for grid application, the thor...
International audienceThe importance of exploring new solid electro-lytes for all-solid-state batter...
A novel tetravalent tin (Sn4+) ion conducting solid electrolyte of the NASICON-type, Sn(Nb1−xWx)5/(5...
Na+ Super-Ionic CONductors (NaSICON) consist of a 3D framework of corner-shared ZrO6 octahedra and (...
A new trivalent gallium (Ga3+) ion conducting solid was successfully developed by selecting the thre...
Rechargeable Li-ion batteries revolutionized portable energy storage, but the fundamental limitation...
The NASICON-type Na1.5Nb0.3Zr1.5(PO4)(3) was prepared by solid state reaction of Nb2O5 and the precu...
Next-generation batteries based on divalent working ions have the potential to both reduce the cost ...
The abundance of sodium and the similarities between lithium and sodium intercalation processes make...
A novel inorganic solid electrolyte with a layered framework structure stable up to 1043 K, Na-14.5[...
Five conductors of three structure types were discovered which, as solids, can transport Na(+) or K(...
Recent studies on various solid-state electrolytes showed that while improvements to the ionic condu...
Divalent ion-conducting solid electrolytes with NASICON-type three-dimensional network structures (M...
Divalent calcium ion conducting solid electrolyte with a three dimensional NASICON-type structure, (...
Na Super Ionic Conductor (NASICON) materials are an important class of solid-state electrolytes owin...
In the search for novel sodium-ion conductors to be used in batteries for grid application, the thor...
International audienceThe importance of exploring new solid electro-lytes for all-solid-state batter...
A novel tetravalent tin (Sn4+) ion conducting solid electrolyte of the NASICON-type, Sn(Nb1−xWx)5/(5...
Na+ Super-Ionic CONductors (NaSICON) consist of a 3D framework of corner-shared ZrO6 octahedra and (...
A new trivalent gallium (Ga3+) ion conducting solid was successfully developed by selecting the thre...
Rechargeable Li-ion batteries revolutionized portable energy storage, but the fundamental limitation...
The NASICON-type Na1.5Nb0.3Zr1.5(PO4)(3) was prepared by solid state reaction of Nb2O5 and the precu...
Next-generation batteries based on divalent working ions have the potential to both reduce the cost ...
The abundance of sodium and the similarities between lithium and sodium intercalation processes make...
A novel inorganic solid electrolyte with a layered framework structure stable up to 1043 K, Na-14.5[...
Five conductors of three structure types were discovered which, as solids, can transport Na(+) or K(...
Recent studies on various solid-state electrolytes showed that while improvements to the ionic condu...