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Sodium-Based Battery Development DOE

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Sodium-Based Battery Development DOE ( sodium-based-battery-development-doe )

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Ionic substitution shows dramatically improved stability to acidic and alkaline media By making select science-based changes in the NaSICON composition and structure, we have dramatically improved it’s stability to both high and low pH conditions  High pH: 10M KOH at 80 oC  baseline material fully degraded, and only an amorphous phase with minor ZrO2 secondary phase is present (forms a sludge)  The new material retains its structure throughout  Low pH  baseline material fully degraded, and only an amorphous phase with minor ZrO2 secondary phase is present  The new material retains its structure throughtout Baseline NaSICON fully degraded after exposure to 10 M KOH at 80 C. Baseline material NZP (NaZr2P3O12) Crystalline Amorphous (degraded) 10M KOH 80C Ionically substituted NaSICONm-NZP Crystalline Crystalline 10M KOH 80C 5

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