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Carbons and Graphites as Substitutes for the Lithium Anode
Electrode Materials Based on Carbon and Graphite
Room Temperature Polymer Electrolytes
10 other sections not shown
amorphous anion annealing anode atoms behavior cathode cathode material CDMO Chem chemical chloride composition compounds crystalline current density cycle number decrease deposited devices diffusion coefficient discharge capacity discharge characteristics discharge curves electrical Electrochemical Society electrode energy density evaporation Figure formation formed galvanostatic GICs graphite heat heat-treated implantable increase insertion intercalation ionic conductivity K. M. Abraham lattice layers LiAsF6 lithium batteries lithium cells lithium iodide lithium ions lithium-ion batteries microbattery molybdenum negative electrode observed obtained octahedral oxide oxygen pacemakers peaks performance phase Phys polymer electrolytes positive electrode potential prepared pulse range reaction rechargeable reduction resistance reversible room temperature S/cm salt sample shown in Fig shows sodium soft carbon sol-gel solid electrolyte Solid State Ionics solid-state solution solvent specific spinel spinel LiMn204 sputtered stability stacking structure substrate temperature technique thermal thin-films TiS2 topotactic transition metal vanadium Wh/kg X-ray diffraction