Aug 16, 2022 · In many cases, heat treatment-induced conductivity enhancements have been attributed to the formation of a superionic thio-LISICON II phase.
Aug 16, 2022 · In many cases, heat treatment-induced conductivity enhancements have been attributed to the formation of a superionic thio-LISICON II phase.
With double doping, stabilization of the cubic phase was achieved with as little as 12 mol.% total dopant concentration, resulting in higher conductivity. The ...
Aug 16, 2022 · In many cases, heat treatment-induced conductivity enhancements have been attributed to the formation of a superionic thio-LISICON II phase.
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Heat treatment-induced conductivity enhancement in sulfide-based solid electrolytes: what is the role of the Thio-LISICON II phase and of other nanoscale phases ...
... Heat Treatment-Induced Conductivity Enhancement in Sulfide-Based Solid Electrolytes: What is the Role of the Thio-LISICON II Phase and of Other Nanoscale Phases ...
Heat Treatment-Induced Conductivity Enhancement in Sulfide-Based Solid Electrolytes: What is the Role of the Thio-LISICON II Phase and of Other Nanoscale Phases ...
This review presents a critical summarization of the interfacial issues in all-solid-state lithium batteries based on sulfide SEs and high-voltage cathodes
May 18, 2024 · Further, the metal halide doping with heat treatment promotes the formation of dominant thio-LISICON phase II and the combination of these ...
Sep 13, 2023 · Heat treatment induces the arrangements providing a metastable crystalline phase, PS43− and P2S74− polyhedra, and eventually results in ...