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After 500 cycles at 5C, the discharge capacity retained as 142 mAh g−1.
Besides, the electrodes also illustrate excellent long cycle life along with 96.8% specific capacity retained after 3000 cycle tests.
The galvanostatic charge discharge cycling stability test showed 87% of initial capacity retained after 900 cycles, suggesting good stability behaviour.
Its specific capacity retained 75% after 500 cycles of charge discharge at the high current density of 2 A g−1 while the coulombic efficiency kept at 100%.
The specific capacity of Li1.2Mn0.6Ni0.2O2 synthesized by sol-free-drying method is 232 mAh g−1 after 100 cycles at 0.2C with 96% of initial discharge capacity retained.
After 100 cycles at a charge discharge rate of 1 C, there is still 100% of initial capacity retained for the LiFePO4/C electrode at −20 °C.
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Among the obtained capacity retaining rates, Mg1.5Al0.4Zr0.1Ni alloy had the best performance.
Moreover, 3D-G@Fe3O4 SC) shows excellent cycling stability that specific capacity retains 1031 mAh g−1 after 1000 cycles.
Moreover, the specific capacity retains 140 mAh g−1 after 2000 cycles at 10C.
Improvement in the alloy capacity retaining rate was also closely related with the hydrogen diffusion coefficients in the alloy.
The capacity retains 83% of its initial value after 3000 deep cycles at the 4 C rate of charge/discharge.
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