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Retention of specific capacitance for the sample was ∼97% after 5000 charge discharge cycles.
Moreover, the retention of specific capacitance of GO-N and GO-OOH-N decreases to 82.1 and 88.8 %, respectively.
The retention of specific capacitance remains 82.7% after 10000 cycles at high current value of 21 mA.
Open image in new window Fig. 6 The plot illustrating the retention of specific capacitance during 4000 extensive charge discharge cycles.
The cyclic stability test shows about 87% retention of specific capacitance after 10000 consecutive charge discharge cycles at a steady current density of 5 A g−1 in 2 electrode organic electrolyte system.
This suggests, that in general, the retention of specific miRNAs is a common phenomenon for breast cancer cells.
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The electrode stability test shows 57.84% retention of the specific capacitance up to 1000 cycles.
The retention of the specific capacitance was maintained at ∼89.8% after 5000 charge discharge cycles.
At 20 A g−1, MCNS, PCNS, and ACNS show 72.7, 70.6, and 70.5% retention of the specific capacitance.
The CuS NW nanoelectrode has superior cycling stability with 87% retention of initial specific capacitance after 5000 cycles.
In addition, the device exhibited good electrochemical stability, with approximately 91.2% retention of initial specific capacitance after 2000 cycles.
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