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- W4281750282 abstract "This investigation records on a sodium vanadate oxide glass anode network mixed with zinc oxide nanocrystallites by heat treatment between Tg and Tc for different schedules. The glass anode sample is prepared with high-energy ball milling using the formula (37.5Na2O-62.5V2O5)(100–x):ZnOx (x = 0, 5, 10, 15, 20, and 25 mol %, labeled as Znx). Clear formation of nanocrystalline grains after heat treating the Zn20 glass anode for 15 h (Zn20-15h) supports the highest diffusion of Na+ ions. The specific discharge and charge capacities are recorded to be 380/370 (0 h), 394/381 (5 h), 427/420 (10 h), 444/439 (15 h), and 419/408 (20 h) mA h/g for different heat treating schedules. It is also worth noting that the initial charge and discharge capacities of the Zn20 glass–ceramic anode sample (after heat treatment) are higher than those of the corresponding glass sample (before heat treatment) but recorded to be the highest for the 15 h heat treating schedule compared with other schedules. The cycling behavior of the Zn20-15h glass–ceramic anode at 4000 mA/g displays longer cycle life stability and high rate capability along with Coulombic efficiency and relatively fast electronic and ionic conductivity even up to 3000 cycles." @default.
- W4281750282 created "2022-06-13" @default.
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- W4281750282 date "2022-05-31" @default.
- W4281750282 modified "2023-10-05" @default.
- W4281750282 title "Enhanced Long Cycle Life Stability and High Storage Reversible Capacity Retention of a Sodium Vanadate Zinc Glass–Ceramic Network" @default.
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- W4281750282 doi "https://doi.org/10.1021/acs.energyfuels.2c00597" @default.
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