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I think "glaikit" is a superior term to "stupid", "messages" preferable to "groceries" and "shoogly" more mellifluous than "unstable".
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The results show that, depending on the selection of split and period, modulation of the gas phase significantly improves the stability of AC compared to steady state operation, thereby performing a superior long term phenol conversion.
The MnO2 hetero-structure with 2 × 2 tunnels constructed from double chains of octahedral [MnO6] structure yield a significantly high specific capacitance of 298 Fg−1 at 5 mV s−1 and demonstrated a superior long term cyclic stability, with specific capacitance retention about 94% after 1000 cycles.
Even so, it still has a superior long-term record.
Consequently, these advantages endow the MnOx/C electrode a better capacitance performance, a superior long-term cyclic stability and outstanding rate capability compared with pristine MnOx.
The electrode also shows an outstanding rate capability providing 155 mAhg−11 at 1000 mA g−1 and a superior long-term cycleability over 1000 cycles.
Interestingly, the hybrid fluorinated coatings exhibit an improved scratch resistance and a superior long-term stability when exposed to an accelerated weathering, compared to pristine PC substrates.
As supercapacitor electrodes, MnO2, NiO, and Co3O4 exhibit an outstanding capacity as high as 838 1185 F g−1 at 0.5 A g−1 and a superior long-term stability with minimal loss of 3 7% after 6000 cycles at 1 A g−1.
More importantly, the CoO rods/porous biocarbons composites display a superior long-term stable reversible capacity of about 550 mAh g−1 at the high current density of 5 A g−1 after 600 cycles.
The electrochemical tests in KOH aqueous electrolyte shows superior capacitive performances, i.e. both high gravimetric and volumetric capacitance of 243 F g−1 and 198 F cm−3, a large areal capacitance of 25.5 μF cm−2, an excellent rate capability as well as a superior long-term cycling stability (96.1% capacitance retention over 10000 cycles).
They not only achieved a high specific capacitance of 312.2F/g at 45 °C with a current density of 1.0 A/g due to the mesoporous architecture of MnO2 layer, but also presented a superior long-term cycling stability with high capacitance retention of 94.7% after 1000 charging/discharging cycles.
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