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The charge/discharge measurements were also performed at different current densities to assess the rate performance which is of particular importance for practical applications.
The rate performance was also improved.
Figure 6d presents the rate performance of the urchin-like γ-MnS in LIB applications.
The rate performance of ZnCo2O4 NCP electrode is provided in Fig. 6.
The rate performance is in accord with the discharge/charge voltage profiles and the cycling performance.
Therefore, it is a key to improve the rate performance of the stretchable supercapacitors.
Here, we have identified the key parameters governing the rate performance of PF6− intercalation into graphite.
The introduction of diamond particles into CNT-based electrodes further improves the rate performance.
Maintaining an appropriate amount of Mn3+ in LNM is necessary to improve the rate performance.
Therefore, the rate performance of the LIB is improved to some extent.
Attributed to higher lithium diffusivity, the rate performance of LiNi0.4Mn1.6O4 is obviously improved.
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