The deactivation process that leads to the end of titanium supported RuO2-TiO2 coating service life, for anodes prepared from RuO2 and TiO2 sols, as well as by the conventional thermal decomposition of RuCl3 and TiCl3, was investigated. The loss of electrocatalytic activity was registered by an accelerated stability test in 0.50 mol dm-3 NaCl electrolyte, while the changes in the electrochemical properties were monitored during the stability test by cyclic voltammetry, polarization measurements and electrochemical impedance spectroscopy in 1.0 mol dm-3 HClO 4 and in 0.50 mol dm-3 NaCl. The changes in anode behavior suggest that the essential cause for the deactivation of the anode prepared by the sol-gel procedure is the formation of an ins...
The influence of the aging time of RuO2 sol on the electrochemical properties and behaviour in chlor...
In order to understand the rule of TiO2 in the deactivation mechanism of an active RuO2-TiO2 coating...
The properties of activated titanium anodes, RuO2-TiO2/Ti and RuO2--TiO2-IrO2/Ti, prepared from oxid...
The deactivation process that leads to the end of titanium supported RuO2-TiO2 coating service life,...
The deactivation process that leads to the end of titanium supported RuO2-TiO2 coating service life,...
Using a sol-gel procedure, RuO2-TiO2 active coatings were formed on a titanium support. The conditio...
Using a sol-gel procedure, RuO2-TiO2 active coatings were formed on a titanium support. The conditio...
TiO2 and RuO2 sols were obtained from RuCl3 and TiCl3 aqueous solutions by condensation and forced h...
TiO2 and RuO2 sols were obtained from RuCl3 and TiCl3 aqueous solutions by condensation and forced h...
TiO2 and RuO2 sols were obtained from RuCl3 and TiCl3 aqueous solutions by condensation and forced h...
The influence of the aging time of RuO2 and TiO2 sols used for the preparation of (40% RuO2 + 60% Ti...
The influence of the aging time of RuO2 and TiO2 sols used for the preparation of (40% RuO2 + 60% Ti...
In order to understand the role of TiO2 in the deactivation mechanism of an active RuO2TiO2 coating,...
In order to understand the rule of TiO2 in the deactivation mechanism of an active RuO2-TiO2 coating...
The influence of the aging time of RuO2 sol on the electrochemical properties and behaviour in chlor...
The influence of the aging time of RuO2 sol on the electrochemical properties and behaviour in chlor...
In order to understand the rule of TiO2 in the deactivation mechanism of an active RuO2-TiO2 coating...
The properties of activated titanium anodes, RuO2-TiO2/Ti and RuO2--TiO2-IrO2/Ti, prepared from oxid...
The deactivation process that leads to the end of titanium supported RuO2-TiO2 coating service life,...
The deactivation process that leads to the end of titanium supported RuO2-TiO2 coating service life,...
Using a sol-gel procedure, RuO2-TiO2 active coatings were formed on a titanium support. The conditio...
Using a sol-gel procedure, RuO2-TiO2 active coatings were formed on a titanium support. The conditio...
TiO2 and RuO2 sols were obtained from RuCl3 and TiCl3 aqueous solutions by condensation and forced h...
TiO2 and RuO2 sols were obtained from RuCl3 and TiCl3 aqueous solutions by condensation and forced h...
TiO2 and RuO2 sols were obtained from RuCl3 and TiCl3 aqueous solutions by condensation and forced h...
The influence of the aging time of RuO2 and TiO2 sols used for the preparation of (40% RuO2 + 60% Ti...
The influence of the aging time of RuO2 and TiO2 sols used for the preparation of (40% RuO2 + 60% Ti...
In order to understand the role of TiO2 in the deactivation mechanism of an active RuO2TiO2 coating,...
In order to understand the rule of TiO2 in the deactivation mechanism of an active RuO2-TiO2 coating...
The influence of the aging time of RuO2 sol on the electrochemical properties and behaviour in chlor...
The influence of the aging time of RuO2 sol on the electrochemical properties and behaviour in chlor...
In order to understand the rule of TiO2 in the deactivation mechanism of an active RuO2-TiO2 coating...
The properties of activated titanium anodes, RuO2-TiO2/Ti and RuO2--TiO2-IrO2/Ti, prepared from oxid...