Palladium, has an unique property between the noble metals, that is the higher capacity to adsorb onto the surface, and within its network, the hydrogen, resulting the Pd of crucial importance to many industrial processes such as catalysis, fuel cell, hydrogen storage and metal brittlement. Since the activity of a noble metal deposited depends strongly on the surface structure, this work is focalized to study the Pd° nucleation and growth mechanisms onto different substrates such as HOPG, and thin pure titanium films. Thus, the constant potential method was used in the nanostructures formation varying the potentials and times. The resulting material was characterized electrochemically and morphologically using scanning electron microscopy ...
Fuel cells, especially low temperature fuel cells, are clean-energy devices that have high potential...
[[abstract]]The atomic-scale crystallographic structures of displacement-activated palladium (Pd) ca...
The oxidations of carbon monoxide and formic acid at ultrathin Pd layers grown on Au nanoparticles w...
AbstractPalladium, has an unique property between the noble metals, that is the higher capacity to a...
Synthesis of low-dimensional metallic nanoparticles with a clean surface, high dispersibility, and e...
The mechanism and kinetics of the electrochemical nucleation and growth of palladium (Pd) nanopartic...
The early stages of the palladium electrodeposition process onto a vitreous carbon (VC) substrate as...
Palladium particles have been electrodeposited on AISI 316 stainless steel substrate from aqueous so...
The mechanism and kinetics of the electrochemical nucleation and growth of Pd nanoparticles (NPs) on...
Hydrogen evolution reaction (HER) was studied on Pd/Au(1 1 1) bimetallic surfaces in alkaline soluti...
The mechanism and kinetics of the electrochemical nucleation and growth of palladium (Pd) nanopartic...
Scanning tunneling microscopy (STM) and conventional electrochemical techniques were utilized to inv...
Nanoparticles, particularly those of noble metals, are of considerable importance for their applicat...
The creation of electrocatalysts based on noble metals has received a significant amount of research...
Abstract Palladium nanoparticles and nanowires electrochemically deposited onto a carbon surface we...
Fuel cells, especially low temperature fuel cells, are clean-energy devices that have high potential...
[[abstract]]The atomic-scale crystallographic structures of displacement-activated palladium (Pd) ca...
The oxidations of carbon monoxide and formic acid at ultrathin Pd layers grown on Au nanoparticles w...
AbstractPalladium, has an unique property between the noble metals, that is the higher capacity to a...
Synthesis of low-dimensional metallic nanoparticles with a clean surface, high dispersibility, and e...
The mechanism and kinetics of the electrochemical nucleation and growth of palladium (Pd) nanopartic...
The early stages of the palladium electrodeposition process onto a vitreous carbon (VC) substrate as...
Palladium particles have been electrodeposited on AISI 316 stainless steel substrate from aqueous so...
The mechanism and kinetics of the electrochemical nucleation and growth of Pd nanoparticles (NPs) on...
Hydrogen evolution reaction (HER) was studied on Pd/Au(1 1 1) bimetallic surfaces in alkaline soluti...
The mechanism and kinetics of the electrochemical nucleation and growth of palladium (Pd) nanopartic...
Scanning tunneling microscopy (STM) and conventional electrochemical techniques were utilized to inv...
Nanoparticles, particularly those of noble metals, are of considerable importance for their applicat...
The creation of electrocatalysts based on noble metals has received a significant amount of research...
Abstract Palladium nanoparticles and nanowires electrochemically deposited onto a carbon surface we...
Fuel cells, especially low temperature fuel cells, are clean-energy devices that have high potential...
[[abstract]]The atomic-scale crystallographic structures of displacement-activated palladium (Pd) ca...
The oxidations of carbon monoxide and formic acid at ultrathin Pd layers grown on Au nanoparticles w...