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Moreover, excellent cycling stability with only 7%% capacity loss after 600 cycles was observed for TiO2 nanorod array electrode.
A rapid fall up to 50 cycles was observed after which the capacitance remained constant throughout the cycling period for 1000 cycles at a 0.1 V/s (Fig. 18); this indicates the excellent cyclic stability of the nanocomposites for supercapacitor applications.
Regarding stability, only a 2% decrease in areal capacitance after 1000 charge/discharge cycles was observed.
Fatigue strength improvement of 25% at 10 million cycles was observed for the coated samples.
A reduction in the compressive strength after exposure to H/C cycles was observed.
The best stability of TiO2 nanotubes in three subsequent irradiation cycles was observed for irradiation intensity of 38 mW/cm2.
Similar(36)
In addition, significantly improved and stable cycling performance up to 60 cycles is observed compared with Co3O4 nanosheets at the limited capacity range of 500 mA h g−1.
In addition, a remarkable rate capability (21.4 F cm−2 at the current density of 30 mA cm−2) and excellent cycling stability (100% after 1000 cycles) were observed.
Between 1660 and 1944 several of these cycles were observed.
Repeatable switching cycles are observed.
Largest duty cycles are observed in urban and industrial environments.
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