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The calculated values of electronic conductivities and discharge voltages for both electrodes are found to be in accordance with the recent experimental reports.
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No significant differences in the methanol electro-oxidation on both electrodes were found by using cyclic voltammetry, especially regarding the onset potential for methanol electro-oxidation.
On the other hand, no significant differences in the methanol oxidation on both electrodes was found using cycling voltammetry, especially regarding the onset potential for methanol oxidation.
The rate and cycling performances of both these electrodes are found to be rather good or even better than the traditional electrodes due to the three-dimensionally porous structure of the RP-derived carbon.
Electrodes are found in a number of configurations and are made of a variety of alloys.
The thicknesses of the Cu and W electrodes are found to be 136 and 85 nm, respectively.
Such floating electrodes are found in, e.g., some lightning protection systems and can modify the breakdown probability of air gaps [1].
Both the graphite and LiNi0.5Mn1.5O4 electrodes were found to exhibit high reversible capacity and superb rate performance in the optimized electrolyte, making us have a new recognition of this important binary solvent.
The modified electrodes were found to be microporous and rough.
Significantly greater MMN amplitude values at central electrodes were found under cannabis extract, but not under Δ9-THC.
However, the pressed electrodes were found to have relatively higher pore sizes and pore volumes compared to the not-pressed electrodes as shown in Fig. 3d.
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