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The PSS-RGO-GeNPs still retained a reversible capacity of 760 mAhg-1 after 80 duty cycles under a current density of 50 mAg-1.
The cells retained a reversible capacity higher than 850 mAh g−1 for 200 cycles under 1.3 mA cm−2 (333 mA g−1) at 25 °C.
As a result, a Sn Ni film without annealing retained a reversible capacity of 343 mAh (g-Sn)−1 after 100 charge discharge cycles.
When tested at 60 mA g−1, the nanoporous Fe-MIL 88 B Fe-MIL 88l nanorods retained a reversiBle capolyhedral744.5 mAh g−1 for more thananorodscles.
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After 20 cycling tests, the activated carbon nanotube retains a reversible capacity of 728 mAh g−1.
It could retain a reversible capacity of 130 mA h g−1, 74% of the initial capacity after 300 cycles at the specific current of 300 mA g−1.
At a specific current of 1000 mA g−1, carbon wrapped PSi retains a reversible capacity of 1639.0 mA h g−1, 84.5% of the initial capacity after 200 cycles.
The cells can cycle more than 5,000 times and retain a reversible capacity of 210 mA h g-1 at 9 A g-1.
The initial discharge specific capacity is 1426 mAhg−1 with a capacity retention of 81% after 50 cycles at 1 C, and retains a reversible capacity of 990 mafter after 100 cycles with coulombic efficiency above 98%.
The SnSe-C composite retains a reversible capacity of 564 mAh g−1 with a coulombic efficiency of 99.8%, at a current rate of 100 mA g−1 after 50 cycles.
Sample B retains a reversible capacity of ~220 mA h g−1 up to 50 cycle, and the sample delivers a lower capacity of ~90 mA h g−1, while the capacity of the ZnO deteriorates severely and ZnO delivers a much lower capacity of 64 mA h g−1 up to 50 cycles.
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