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Sulfide Solid Electrolyte with Favorable Mechanical Property for All-Solid-State Lithium Battery

Scientific Reports · 2013 · Vol. 3(1)
Atsushi SakudaAkitoshi HayashiMasahiro Tatsumisago

Abstract

All-solid-state secondary batteries that employ inorganic solid electrolytes are desirable because they are potentially safer than conventional batteries. The ionic conductivities of solid electrolytes are currently attracting great attention. In addition to the conductivity, the mechanical properties of solid electrolytes are important for improving the energy density and cycle performance. However, the mechanical properties of sulfide electrolytes have not been clarified in detail. Here, we demonstrate the unique mechanical properties of sulfide electrolytes. Sulfide electrolytes show room temperature pressure sintering. Ionic materials with low bond energies and a highly covalent character, which is promising for achieving a high ionic conductivity, tend to be suitable for room-temperature processing. The Young's moduli of sulfide electrolytes were measured to be about 20 GPa, which is an intermediate value between those of typical oxides and organic polymers.

Advanced Battery Materials and TechnologiesAdvancements in Battery MaterialsThermal Expansion and Ionic ConductivityElectrolyteIonic conductivitySulfideFast ion conductorMaterials scienceIonic bondingLithium (medication)SinteringBattery (electricity)Conductivity

Funding

  • Toray Research Center
  • Japan Society for the Promotion of Science
Citations
1,002
FWCI
14.19
field-weighted impact
References
14
Percentile
99%
vs. same field & year
Citations per year
References
Building better batteries
Nature · 2008 · 19,103 citations
Direct calculation of Young's moidulus of glass
Journal of Non-Crystalline Solids · 1973 · 951 citations
A lithium superionic conductor
Nature Materials · 2011 · 4,763 citations
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