The influence of the aging time of RuO2 and TiO2 sols used for the preparation of (40% RuO2 + 60% TiO2)/Ti anodes by the sol-gel procedure on the electrochemical properties and behavior for the chlorine evolution reaction of obtained anodes was studied. The electrochemical (active) surface area of the anode coatings was examined by cyclic voltammetry. The electrocatalytic activity and stability of obtained anodes for the chlorine evolution reaction were investigated by polarization measurements and accelerated stability test. The dependence of electrochemical properties of obtained activated titanium anodes on RuO2 and TiO2 sol particle size was established. (C) 2000 Elsevier Science Ltd. All rights reserved.50th Annual Meeting of the Inter...
Electrocatalytic properties of RuO2/Ti anode with different coating masses, which are prepared by th...
Electrocatalytic properties of RuO2/Ti anode with different coating masses, which are prepared by th...
The properties of activated titanium anodes, RuO2-TiO2/Ti and RuO2--TiO2-IrO2/Ti, prepared from oxid...
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% TiO2...
The influence of the aging time of RuO2 and TiO2 sols used for the preparation of (40% RuO2+60% TiO2...
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...
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...
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...
The influence of the addition of methanol, ethanol, 1-propanol and 2-propanol to the dispersing medi...
Using a sol-gel procedure, RuO2-TiO2 active coatings were formed on a titanium support. The conditio...
The influence of the addition of methanol, ethanol, 1-propanol and 2-propanol to the dispersing medi...
Electrocatalytic properties of RuO2/Ti anode with different coating masses, which are prepared by th...
Electrocatalytic properties of RuO2/Ti anode with different coating masses, which are prepared by th...
The properties of activated titanium anodes, RuO2-TiO2/Ti and RuO2--TiO2-IrO2/Ti, prepared from oxid...
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% TiO2...
The influence of the aging time of RuO2 and TiO2 sols used for the preparation of (40% RuO2+60% TiO2...
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...
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...
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...
The influence of the addition of methanol, ethanol, 1-propanol and 2-propanol to the dispersing medi...
Using a sol-gel procedure, RuO2-TiO2 active coatings were formed on a titanium support. The conditio...
The influence of the addition of methanol, ethanol, 1-propanol and 2-propanol to the dispersing medi...
Electrocatalytic properties of RuO2/Ti anode with different coating masses, which are prepared by th...
Electrocatalytic properties of RuO2/Ti anode with different coating masses, which are prepared by th...
The properties of activated titanium anodes, RuO2-TiO2/Ti and RuO2--TiO2-IrO2/Ti, prepared from oxid...