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CV curves of the composites before and after 100 cycles stability tests in 0.1 M HClO4 solution at 50 mV s−1, (A-D) samples fabricated in 1, 0.05, and 0.02 M HClO4, and 0.1 M NaOH and (E) MnO2 obtained by heating MnO2/PANI composite fabricated in 0.02 M HClO4.
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Lithium-rich cathode materials possess poor cycle stability and severe voltage decay during cycling.
In addition, the cycle stability is investigated.
The sample behaved superior cycle stability.
Additionally, the device shows high cycle stability for 10,000 cycles.
The 3DOM Li4Ti5O12 electrode showed good cycle stability.
Meanwhile, the composites also exhibited good cycle stability.
Both of them make contribution to the better cycle stability.
Electrochemical cycle stability is determined by galvanostatic charge/discharge.
The cycle stability of these supercapacitors up to 4000 cycles confirms their electrochemical stability.
Furthermore, the Co(OH 2 nanoflowers also exhibited good cycle stability with capacity retention of 91.7% after 1000 cycles as shown in Fig. S5e.
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