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In addition, these reversible switching properties were kept stable during the repeated cycling tests of above 200 cycles and a test period of approximately 105 s under atmosphere.
However it suffers the occurrence of large irreversible capacity loss in the first galvanostatic cycle, capacity fading upon repeated cycling and self-discharge once fully charged up to 5 V vs. Li.
However, the catalytic effect of RMs deteriorates with repeated cycling.
The catalytic current was stable upon repeated cycling.
However, this capacity faded rapidly after repeated cycling.
However, the gradual deactivation of redox mediators during repeated cycling has not conclusively been explained.
More functional infrared sensors were used instead of proximity sensors that are sensitive to repeated cycling.
These side reactions result in an increase in interfacial resistance, greatly degrading battery performance during repeated cycling.
Repeated cycling caused increasing accumulation of non deconverted material in the bulk thin film electrode.
A negligible growth of impedance upon repeated cycling has been observed.
Carbon nanofibers could help preserve the alloy anode materials during repeated cycling, and consequently maintain the cycling stability.
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