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In the cyclic voltammograms of diphenylamino group-containing polymers, poly(1b) and poly(2b), the intensities of oxidation and reduction peaks decreased more than those of carbazolyl-containing poly(2a).
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The current intensity of oxidation peak is much lower than that of reduction peak.
The intensity of oxidation depends on the distance from the film surface it is much more pronounced within the outer layer of the film.
The different oxidation conditions are reflected in the varying intensities of the oxidation products.
Redox buffering led to a significant decrease of the signal intensities of the oxidation products; the reduction of the signal intensity was in all cases >85%%.
The current intensity attenuation of oxidation peak indicates that Mn element could not completely convert to MnO2 during the charging process.
We postulated that interindividual differences in F2-isoprostanes reflect a variability of the intensity of oxidative metabolism, specifically fat oxidation (4), because glucose uptake accounts for only a minor proportion of peripheral oxygen consumption (5).
From these results, it can be seen that the intensity of the oxidation current decreased in the order of V. parahaemolyticus < V.
The addition of Al III) lowers the intensity of the oxidation wave due to the formation of the redox-inactive complex AlL33−.
The current intensity of methanol oxidation increases impressively on Ni/P-CPE in the presence of methanol and in comparison with CPE that means the catalyst can reduce the overvoltage of methanol oxidation.
This was demonstrated either by the difference of the maximum current intensity of isopropanol oxidation measured in cyclic voltammograms, or by the different variation of the intensity of specified ir band with potential for species produced within a defined time window (in situ FTIR spectroscopy).
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