Electrochemical properties of sol-gel processed Ti(0.6)Ir(0.4)O(2) and Ti(0.6)Ru(0.3)Ir(0.1)O(2) coatings on titanium substrate were investigated using cyclic voltammetry, polarization measurements and electrochemical impedance spectroscopy and compared to the properties of Ti(0.6)Ru(0.4)O(2) coating. The role of iridium oxide in the improvement of the electrocatalytic, capacitive and stability properties of titanium anodes activated by a RuO(2)-TiO(2) coating is discussed. The oxide sols were prepared by forced hydrolysis of the metal chlorides. The characterization by dynamic light scattering and X-ray diffraction showed that polydisperse oxide sols were obtained with the particles tending to form agglomerates. The presence of IrO(2) caus...
In order to understand the rule of TiO2 in the deactivation mechanism of an active RuO2-TiO2 coating...
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...
Electrochemical properties of sol-gel processed Ti(0.6)Ir(0.4)O(2) and Ti(0.6)Ru(0.3)Ir(0.1)O(2) coa...
Electrochemical properties of sol-gel processed Ti(0.6)Ir(0.4)O(2) and Ti(0.6)Ru(0.3)Ir(0.1)O(2) coa...
Electrochemical properties of sol-gel processed Ti(0.6)Ir(0.4)O(2) and Ti(0.6)Ru(0.3)Ir(0.1)O(2) coa...
The electrochemical characteristics of Ti(0.6)Ir(0.4)O(2)/Ti and Ti(0.6)Ru(0.4)O(2)/Ti anodes prepar...
The electrochemical characteristics of Ti(0.6)Ir(0.4)O(2)/Ti and Ti(0.6)Ru(0.4)O(2)/Ti anodes prepar...
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...
AbstractTernary mixed metal oxide coatings with the nominal composition IrxRu(0.6−x)Ti0.4O2 (x=0, 0....
The electrochemical properties of a sol-gel-prepared IrO2-TiO2 coating on Ti were investigated from ...
Electroactive oxide coatings on titanium, known in industrial chlorine production as dimensionally s...
In order to understand the role of TiO2 in the deactivation mechanism of an active RuO2TiO2 coating,...
Electroactive oxide coatings on titanium, known in industrial chlorine production as dimensionally s...
In order to understand the rule of TiO2 in the deactivation mechanism of an active RuO2-TiO2 coating...
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...
Electrochemical properties of sol-gel processed Ti(0.6)Ir(0.4)O(2) and Ti(0.6)Ru(0.3)Ir(0.1)O(2) coa...
Electrochemical properties of sol-gel processed Ti(0.6)Ir(0.4)O(2) and Ti(0.6)Ru(0.3)Ir(0.1)O(2) coa...
Electrochemical properties of sol-gel processed Ti(0.6)Ir(0.4)O(2) and Ti(0.6)Ru(0.3)Ir(0.1)O(2) coa...
The electrochemical characteristics of Ti(0.6)Ir(0.4)O(2)/Ti and Ti(0.6)Ru(0.4)O(2)/Ti anodes prepar...
The electrochemical characteristics of Ti(0.6)Ir(0.4)O(2)/Ti and Ti(0.6)Ru(0.4)O(2)/Ti anodes prepar...
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...
AbstractTernary mixed metal oxide coatings with the nominal composition IrxRu(0.6−x)Ti0.4O2 (x=0, 0....
The electrochemical properties of a sol-gel-prepared IrO2-TiO2 coating on Ti were investigated from ...
Electroactive oxide coatings on titanium, known in industrial chlorine production as dimensionally s...
In order to understand the role of TiO2 in the deactivation mechanism of an active RuO2TiO2 coating,...
Electroactive oxide coatings on titanium, known in industrial chlorine production as dimensionally s...
In order to understand the rule of TiO2 in the deactivation mechanism of an active RuO2-TiO2 coating...
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...