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This material delivers an improved tap density of 1.3 g/cm3 and a high electronic conductivity of 10−2 to 10−3 S/cm.
The material delivers an initial discharge capacity of 802 mAh g−1 and maintains it at 578 mAh g−1 with a columbic efficiency greater than 97.1% after 140 cycles at 0.1 C.
The LiMn2O4@V2O5 material delivers an excellent cycling ability and rate capability in lithium batteries, while sustaining a capacity of 75.5 mAh g−1 after 200 cycles at 2 C with a high operating temperature (328 K).
Moreover, the composite electrode material delivers an energy density as high as 25.5 Wh/kg at a power density of 266.3 W/kg and maintains 14.5 Wh/kg at a high power density of 4002 W/kg.
The electrode material delivers an initial capacity of 210 mA h/g close to the theoretical capacity and shows a good rechargeability with a stable rechargeable capacity of 180 mA h/g at a current rate of 0.4 mA/cm2 (C/3).
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The material delivers a charge capacity of more than 750 mAh g−1.
The triple-layered material delivers a HER performance better than most of the corresponding 2H-MoS2, Ni3S2 and Co9S8 over a wide range of pH values (0 14).
The self ion-exchanged material delivers a high discharge capacity of 195 mA h g−1 and a stable plateau at 3.0 V for 50 cycles with stable cyclability.
The as-prepared Co3O4-coated NCA cathode material delivers a specific capacity of 207.6 mAh g−1 with an initial Coulombic efficiency of 90.8% at 0.1 C.
The LiNi0.5Mn1.5O4 material delivers a discharge capacity of more than 138 mAh g−1 with excellent capacity retention of more than 97% after 50 cycles even at 55 °C.
The material delivers a high discharge capacity of 227 mAh g−1 at 0.1C in the potential range of 1.8-4.5 versusus Li/Li+.
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