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Error function approximations of interest in electrochemistry.
(Editora Unesp, 1996-01-01)
The error function is present in several equations describing eletrode processes. But, only approximations of this function are used. In this work, these and other approximations are studied and evaluated according to precision.
Analysis of the applicability of short time chronoamperometry for the kinetic study of the hydrogen oxidation reaction
(Elsevier, 2013-09)
This work analyses the applicability of the chronoamperometric method for the evaluation of the kinetic parameters of the hydrogen oxidation reaction. It consists in the application of an overpotential step and the subsequent ...
ELECTROCHEMICAL OXIDATION OF IODIDE AT A GLASSY CARBON ELECTRODE IN METHYLENE CHLORIDE AT VARIOUS TEMPERATURES
(Sociedad Chilena de Química, 2010)
Electrochemical determination of the antioxidant capacity: The ceric reducing/antioxidant capacity (CRAC) assay
(WILEY-BLACKWELL, 2008)
The CRAC assay is a direct electron transfer test of antioxidant capacity for several organic compounds. The ability of eight different compounds in reducing Cc 41 was studied by chronoamperometric measurements of the ...
Error function approximations of interest in electrochemistry.
(Editora Unesp, 2014)
Error function approximations of interest in electrochemistry.
(Editora Unesp, 1996-01-01)
The error function is present in several equations describing eletrode processes. But, only approximations of this function are used. In this work, these and other approximations are studied and evaluated according to precision.
Aproximações da função erro de interesse em eletroquímica
(1996-12-01)
The error function is present in several equations describing eletrode processes. But, only approximations of this function are used. In this work, these and other approximations are studied and evaluated according to precision.
Electrochemical behavior of ruthenium-hexacyanoferrate modified glassy carbon electrode and catalytic activity towards ethanol electrooxidation
(2013-05-06)
Ruthenium-based hexacyanoferrate (RuHCF) thin film modified glassy carbon electrode was prepared by drop evaporation method. The RuHCF modified electrode exhibited four redox couples in strong acidic solution (pH 1.5) ...