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Furthermore, this capacitance is maintained over 20,000 cycles.
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It also possessed high rate capability of 92.4% with the current density ranging from 0.2 to 10 A g−1, as well as excellent cyclic lifetime over which 80.8% of the capacitance were maintained after 5000 cycles at 5 A g−1.
Importantly, 97% of the initial capacitance is maintained after 5000 cycles, suggesting excellent cycling stability.
Concerning the cycle stability, more than 90% of the initial capacitance is maintained after 10000 consecutive cycles at high current densities (20 A/g and 30 A/g).
93.1% of the total capacitance is maintained after 1600 charge-discharge cycles and the energy and power densities are superior to that of activated carbon.
After 104 charge/discharge cycles, 89.5% of the initial capacitance was maintained.
The retention of the specific capacitance was maintained at ∼89.8% after 5000 charge discharge cycles.
The energy storage performance was also very stable since 82% specific capacitance was maintained after 1000 cycles.
After 1000 cycles of CV at 10 mV/s, the initial capacitance was maintained at about 91%, indicating that the designed structure had benefit to high electrochemical stability.
The CNFs/MnO2 composites displayed a specific capacitance of 151.1 F/g at 1 A/g, and 90% of the initial specific capacitance was maintained after 8000 cycles.
Approximately 50% of the initial area capacitance was maintained at 25 V s−1 for the HM-CNWs, and their area capacitance was decreased by ~ 1.1 mF g−1 at 100 V s−1.
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