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e,The discharge capacities during initial 25 cycles.
Figure 3(b) shows galvanostatic discharge capacities with various current densities (using units of C-rate).
The first specific discharge capacities of the samples were performed.
In nanocrystalline Mg1.5Mn0.5Ni alloy discharge capacities up to 241 mA h g−1 were measured.
In nanocrystalline Mg2Ni powder, discharge capacities up to 100 mAh g−1 were measured.
The new dual-phase alloys were found to have high C-rate discharge capacities.
The electrochemical tests have shown that higher initial discharge capacities are obtained after first cycle.
The charge and discharge capacities have been determined as a function of the cycle number.
The synthesized solid solutions delivered high discharge capacities with negligible capacity fading.
We demonstrate its high specific discharge capacities and excellent capacity retention.
In nanocrystalline LaNi3.75Mn0.75Al0.25Co0.25 powder, discharge capacities up to 260 mA h g−1 were measured.
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