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CA_20 exhibit the highest specific capacitance due to facile electrolyte ion transport.
The highest specific capacitance was 202 F g−1 and kept steady after 400 cycles.
The printing specimens were used in this study because of their highest specific capacitance reported in the previous studies.
As the electrode materials for supercapacitors, CuCo2O4 nanoneedles delivered the highest specific capacitance compared with other CuCo2O4 nanostructures.
The highest specific capacitance of 234, 203 and 167 F g−1 for three RuO2 nanostructures was obtained.
CV examination showed that the as-deposited coatings also exhibited the highest specific capacitance of 275 F/g.
The samples anodized in MPD-boric acid electrolyte with a ratio of 3 10 (volume %) exhibited the highest specific capacitance.
The MnO2/RGO composites showed excellent electrochemical performance with a highest specific capacitance of about 330 F.g−1.
The highest specific capacitance of 1184.52 F/g is obtained for the as-deposited film on stainless steel.
Hence electrochemical analysis reviled the highest specific capacitance (186 F g−1) and cyclic stability for MnOxPdCC with obtained at current density of 1 mA cm−2.
Highest specific capacitance value was found to be 213 for1 for the PEDOT Grp-MnO2 (with the ratio of 1:3) with imPEDOT Grp-MnO2and powithdensithes.
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