NASICON-type solid electrolytes are promising materials for novel solid-state-batteries aiming toward high energy densities. Na1+xHf2Si2.3P0.7O10.85+0.5x with varying sodium content as well as Sc- or Mg-doped and undoped Na1+xZr2P3-xSixO12 were synthesized by solution-assisted solid-state reaction. Microstructural and mechanical characteristics as well as conductivities were investigated. The electrochemical and microstructural properties of all studied materials appear to be highly affected by the sodium content glassy phase and secondary phase formation as well as bloating. The mechanical properties of the specimens depend mainly on microstructural characteristics. Our findings indicate improved mechanical behavior is achieved when bloati...
New sodium-based battery concepts require solid electrolytes as ion conducting separators. Besides N...
International audienceThe replacement of the presently used liquid electrolytes by a nonflammable so...
Na superionic conductor (NASICON) Na3Zr2Si2PO12 is a promising but not applicable electrolyte for so...
NASICON-type solid electrolytes are promising materials for novel solid-state-batteries aiming towar...
In the search for novel sodium-ion conductors to be used in batteries for grid application, the thor...
The overwhelming demand of energy storage technologies has forced the scientific community to look b...
The pursuit of a reliable energy storage system, environmentally affordable and efficient opens the ...
Despite of huge efforts, the lack of suitable candidate for electrolytes still impedes the developme...
The low ionic conductivity and poor dendrites suppression capability of Na3Zr2Si2PO12 solid electrol...
The electrochemical storage of electricity in batteries is one key solution to the future extensive ...
Molten sodium (Na) anode high temperature batteries, such as Na-NiCl2 and Na-S, draw attentions to b...
NASICON is one of the most promising sodium solid electrolytes that can enable the assembly of cheap...
Al/Y-substituted NASICON solid electrolytes are promising for novel solid state batteries. The solid...
Solid electrolytes (SEs) offer great potential as the basis for safer rechargeable batteries with hi...
With a crystal lattice structure first characterized in the 1970s, NASICON sodium-based superionic c...
New sodium-based battery concepts require solid electrolytes as ion conducting separators. Besides N...
International audienceThe replacement of the presently used liquid electrolytes by a nonflammable so...
Na superionic conductor (NASICON) Na3Zr2Si2PO12 is a promising but not applicable electrolyte for so...
NASICON-type solid electrolytes are promising materials for novel solid-state-batteries aiming towar...
In the search for novel sodium-ion conductors to be used in batteries for grid application, the thor...
The overwhelming demand of energy storage technologies has forced the scientific community to look b...
The pursuit of a reliable energy storage system, environmentally affordable and efficient opens the ...
Despite of huge efforts, the lack of suitable candidate for electrolytes still impedes the developme...
The low ionic conductivity and poor dendrites suppression capability of Na3Zr2Si2PO12 solid electrol...
The electrochemical storage of electricity in batteries is one key solution to the future extensive ...
Molten sodium (Na) anode high temperature batteries, such as Na-NiCl2 and Na-S, draw attentions to b...
NASICON is one of the most promising sodium solid electrolytes that can enable the assembly of cheap...
Al/Y-substituted NASICON solid electrolytes are promising for novel solid state batteries. The solid...
Solid electrolytes (SEs) offer great potential as the basis for safer rechargeable batteries with hi...
With a crystal lattice structure first characterized in the 1970s, NASICON sodium-based superionic c...
New sodium-based battery concepts require solid electrolytes as ion conducting separators. Besides N...
International audienceThe replacement of the presently used liquid electrolytes by a nonflammable so...
Na superionic conductor (NASICON) Na3Zr2Si2PO12 is a promising but not applicable electrolyte for so...