China
Southwest University of Science and Technology
Ti0.1-NVP/C, Ti3+/Ti4+, symmetrical full cell, Ti doping, sodium storage mechanism
Sodium-ion battery, N-doped carbon layer, High-rate capability, Na3V2(PO4)3
Sodium-Ion Battery, N-doped carbon layer, high-rate capability, Na3V2(PO4)3
NVMP/C-0.5, Ex-situ XRD, NVMP/C-0.5//hard carbon full cell, High energy density, Ex-situ XPS
Sodium-ion batteries, Na3V2(PO4)3, like-sol-gel method, full-cell, Failure mechanism, replenishing sodium
Sodium-ion batteries, Electrolyte solvation structure, 15-Crown-5, Solid electrolyte interface