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It was found that the reaction process is dominated by the mixed diffusion of superoxide ions, O−2 and CO2.
The reaction order analysis of Warburg coefficients σapp, which were obtained by ac impedance measurements, revealed that the reaction process is dominated by the mixed diffusion of superoxide ion O2− and dissolved CO2.
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A sharp increase in the current density in the mixed kinetic diffusion controlled region suggests that there was an efficient diffusion of the reactants, which was facilitated by the mesoporous structure of NC-6.
By the mixed monotonicity of, we have.
Water molecule diffusion can be described by the diffusion tensor and diffusion coefficient D; as D increases, the diffusion speed increases.
The oxidation resulted in the formation of an outer NiO layer by outward transport of Ni, and an inner (NiO+NiWO4) mixed oxide layer by the inward diffusion of oxygen.
During thermal exposure, a continuous layer of pure α-alumina forms and grows underneath the mixed zone by oxygen inward diffusion.
Simultaneously, an inner (Al2O3, Cr2O3 -mixed layer and an innermost TiO2 layer were formed by the inward diffusion of oxygen ions.
Crystals were grown by the vapor diffusion method.
Diffusion is measured quantitatively by the apparent diffusion coefficient (ADC).
Restriction of diffusion was quantified by the apparent diffusion coefficient (ADC) value.
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