The effect of the anode material on the rate of electrodeposition of Fe-W alloy coatings from a citrate bath is studied. Both Fe and Ni soluble anodes and Pt and graphite insoluble anodes are addressed. The effects associated with the anode material are attributed to anodic oxidation of an Fe(II)-citrate complex involved in electrodeposition. In addition to its likely oxidation at the anode, this complex catalyzes reduction of W-containing species and acts as precursor to Fe deposition; these processes unfold via the formation of corresponding intermediates, their surface coverage determining the alloy composition. X-ray photoelectron spectroscopy characterization of deposited alloys indicates that the intermediate FeOHads is oxidized by wa...
Electrodeposited Fe-W alloys are the subject of extensive studies to be applied in versatile enginee...
The correlation between the composition, morphology, and properties of Fe-W alloy coatings containin...
Principles of three component Iron-Cobalt-Tungsten alloys electrodeposition from complex Fe (III) ba...
The impact of the anode material on the rate of electrodeposition of Fe-W alloy coatings from a citr...
The electrode processes occurring during electrodeposition of nanocrystalline Fe−W alloy coatings fr...
Using cyclic voltammetry, electrode processes of electrodeposition of nanocrystalline Fe-W coatings ...
Electrodeposition of Fe–W alloy has been carried out from acidic triammonium citrate (TAC) complex b...
The effects the anode material has on the rate of electrodeposition (current efficiency) and microha...
We investigated the feasibility of long-term, continuous electroplating using an Fe-W alloy bath. Wh...
Electrodeposition of Fe-W alloy has been carried out from acidic triammonium citrate (TAC) complex b...
Fe–W alloys containing ~23–30 at.% tungsten were electrodeposited from citrate–ammonia solutions at ...
The investigation of Fe-W alloys is growing in comparison to other W alloys with iron group metals d...
The metallic coatings have their importance in the protection of structures against corrosion, gaini...
The cause of the microscopic size effect in the microhardness of electroplated binary alloys between...
Due to the presence of tungsten, Fe-W alloys can be applied as anticorrosive coatings. However, the ...
Electrodeposited Fe-W alloys are the subject of extensive studies to be applied in versatile enginee...
The correlation between the composition, morphology, and properties of Fe-W alloy coatings containin...
Principles of three component Iron-Cobalt-Tungsten alloys electrodeposition from complex Fe (III) ba...
The impact of the anode material on the rate of electrodeposition of Fe-W alloy coatings from a citr...
The electrode processes occurring during electrodeposition of nanocrystalline Fe−W alloy coatings fr...
Using cyclic voltammetry, electrode processes of electrodeposition of nanocrystalline Fe-W coatings ...
Electrodeposition of Fe–W alloy has been carried out from acidic triammonium citrate (TAC) complex b...
The effects the anode material has on the rate of electrodeposition (current efficiency) and microha...
We investigated the feasibility of long-term, continuous electroplating using an Fe-W alloy bath. Wh...
Electrodeposition of Fe-W alloy has been carried out from acidic triammonium citrate (TAC) complex b...
Fe–W alloys containing ~23–30 at.% tungsten were electrodeposited from citrate–ammonia solutions at ...
The investigation of Fe-W alloys is growing in comparison to other W alloys with iron group metals d...
The metallic coatings have their importance in the protection of structures against corrosion, gaini...
The cause of the microscopic size effect in the microhardness of electroplated binary alloys between...
Due to the presence of tungsten, Fe-W alloys can be applied as anticorrosive coatings. However, the ...
Electrodeposited Fe-W alloys are the subject of extensive studies to be applied in versatile enginee...
The correlation between the composition, morphology, and properties of Fe-W alloy coatings containin...
Principles of three component Iron-Cobalt-Tungsten alloys electrodeposition from complex Fe (III) ba...