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Besides, it exhibits a high rate capacity of 150 mAh g−1 even at 5 C.
Na/Na+, with nearly 100% cycling Coulombic efficiency, remarkable cycling retention and high rate capacity.
The high rate capacity is attributed to porous nature of the materials.
The electrochemical test of the Fe3O4@C/graphene nanocomposite demonstrates high rate capacity.
Even at 800 mA g−1, it also exhibited excellent high rate capacity of 350 mA h g−1.
These values are much higher than 0.5, which indicates that fast capacitive process occurs during Na storage, contributing to the high rate capacity for the Bi2Se3/C electrode.
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The anode exhibited high rate capacities with good reversibility under high rate cycling.
Similar to conventional secondary batteries, cyclability, and high rate capacities are also required for application of flexible electronics.
Porous spherical LiMnPO4·2Li3V2 PO4 3/C delivered an initial capacity of 132.6 mAh g−1 at 0.1 C and noticeably enhanced high rate capacities at 1, 3 and 10 C.
The lithiation rate of Si/C is 3 4.5 times faster than that of uncoated Si with the same diameter, a testament to high rate capacities of Si/C in real batteries.
They exhibit high rate capacities and good cyclic performance as LIB anodes owing to their architecture design, which reduces ion and electron transport distance, expands the electrode electrolyte contact, increases the structural stability, and buffers volume change during cycles.
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