In this work, industrial IrO2-Ta2O5 anodes calcined at different temperatures were investigated. The results show that the calcination temperature has significant influence on the surface microstructure including the crystallinity and the preferred orientation of IrO2 crystallite of the formed IrO2-Ta2O5 binary oxide. The IrO2 phase is partially amorphous at low calcination temperature in the present study. The (101) IrO2 planes dominates at low or moderate calcination temperatures, whereas the (110) IrO2 orientation was preferred at the highest calcination temperature. Surface morphology of the anodes was revealed as mud-cracks surrounded by a flat area with plenty of scattered nano-IrO2 crystallites. The size of the nano-IrO2 crystallites...
The great interest of the electrochemical industry toward materials that exhibit high electrocatalyt...
The morphol. examn. and study of the crystal structure of oxygen-evolving dimensionally stable anode...
The great interest of the electrochemical industry toward materials that exhibit high electrocatalyt...
In this work, commercial IrO2-Ta2O5 anodes with a certain composition calcined at three different te...
The substrates of Ti based IrO2-Ta2O5 coated anodes were treated by solid-solution and aging, stress...
Insoluble electrodes consisting of a titanium substrate coated with the mixture of IrO2 and Ta2O5 pr...
An insoluble anode, consisting of an IrO2-Ta2O5 catalytic layer formed on a titanium substrate, has ...
In hydrometallurgical copper production plants, titanium-based electrodes coated with a conductive l...
Hydrometallurgical copper electrowinning (EW) tank houses employ IrO2 - Ta2O5 coated titanium anodes...
The elaboration of inert anodes suitable for oxygen evolution in acidic media was investigated. Thes...
The “age” of the fundamental studies on the so-called DSAs (Dimensionally Stable Anodes) probably st...
We report amorphous iridium oxide (IrO2) and tantalum oxide (Ta2O5) electrocatalysts supported on ti...
Ternary IrO2-Sb2O5-SnO2 anode has shown its superiorities over IrO2 and many other electrocatalysts ...
The suitability of various dimensionally stable anodes (DSAs®) was investigated in comparison to the...
Previous studies have shown that ternary IrO2-Sb2O5-SnO2 is among the best electrocatalysts for O-2 ...
The great interest of the electrochemical industry toward materials that exhibit high electrocatalyt...
The morphol. examn. and study of the crystal structure of oxygen-evolving dimensionally stable anode...
The great interest of the electrochemical industry toward materials that exhibit high electrocatalyt...
In this work, commercial IrO2-Ta2O5 anodes with a certain composition calcined at three different te...
The substrates of Ti based IrO2-Ta2O5 coated anodes were treated by solid-solution and aging, stress...
Insoluble electrodes consisting of a titanium substrate coated with the mixture of IrO2 and Ta2O5 pr...
An insoluble anode, consisting of an IrO2-Ta2O5 catalytic layer formed on a titanium substrate, has ...
In hydrometallurgical copper production plants, titanium-based electrodes coated with a conductive l...
Hydrometallurgical copper electrowinning (EW) tank houses employ IrO2 - Ta2O5 coated titanium anodes...
The elaboration of inert anodes suitable for oxygen evolution in acidic media was investigated. Thes...
The “age” of the fundamental studies on the so-called DSAs (Dimensionally Stable Anodes) probably st...
We report amorphous iridium oxide (IrO2) and tantalum oxide (Ta2O5) electrocatalysts supported on ti...
Ternary IrO2-Sb2O5-SnO2 anode has shown its superiorities over IrO2 and many other electrocatalysts ...
The suitability of various dimensionally stable anodes (DSAs®) was investigated in comparison to the...
Previous studies have shown that ternary IrO2-Sb2O5-SnO2 is among the best electrocatalysts for O-2 ...
The great interest of the electrochemical industry toward materials that exhibit high electrocatalyt...
The morphol. examn. and study of the crystal structure of oxygen-evolving dimensionally stable anode...
The great interest of the electrochemical industry toward materials that exhibit high electrocatalyt...