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The smaller charge transfer and electrolyte diffusion resistance are mainly demonstrated to be responsible.
In my film America's Forgotten War, these very same guns are shooting, albeit with a smaller charge.
Tafel polarization and electrochemical impedance spectroscopy showed that CoS2 electrode has smaller charge transfer resistance than Pt electrodes.
Ti/Cu-NRs/SnO2-Sb anode possessed smaller charge transfer resistance and longer service life than Ti/SnO2-Sb anode.
The nanocomposites of MnO2/CB/C show better areal specific capacitances and smaller charge transfer resistances at each ratio.
Most of the oxygen functional groups in ERGO were successfully removed resulting in smaller charge transfer resistance.
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Cyclic voltammogram measurement revealed that PPy electrode possessed smaller charge-transfer resistance and higher electrocatalytic activity for the I2/I− redox reaction than that of Pt electrode.
Electrochemical impedance spectroscopy (EIS) analysis shows that, compared with composites LMS/G and LMS/C, composite LMS/C/G has smaller charge-transfer resistance through the solid-electrolyte interfaces and faster lithium ions diffusion coefficient in the cathode materials.
When employed as active materials for supercapacitor electrodes, CMnO2-2 exhibited larger specific capacitance, higher rate capability and better cycling stability than CMnO2-1 due to the fast ion penetration and smaller charge-transfer resistance.
The significantly improved rate capability and cycling performance of the LTO NSs/CNTs composites are mainly attributed to their the lower polarization of potential difference, the larger diffusion coefficient of lithium ion and smaller charge-transfer resistance than pure LTO NSs.
The analyses demonstrate that compared with the pristine LiMn2O4 sample, the phosphate-doped samples have a relatively large Li-ion diffusion coefficient and smaller charge-transfer resistance due to the increase of the unit cell volume of spinel LiMn2O4 caused by the doping of phosphate.
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