A carbon supported PtCux/C catalyst, which demonstrates high activity in the oxygen electroreduction and methanol electrooxidation reactions in acidic media, has been obtained using a method of chemical reduction of Pt (IV) and Cu (2+) in the liquid phase. It has been found that the potential range of the preliminary voltammetric activation of the PtCux/C catalyst has a significant effect on the de-alloyed material activity in the oxygen electroreduction reaction (ORR). High-resolution transmission electron microscopy (HRTEM) demonstrates that there are differences in the structures of the as-prepared material and the materials activated in different potential ranges. In this case, there is practically no difference in the composition of th...
Carbon supported Pt-Cu catalyst (PtCu/C) with surface enriched Pt was synthesized by annealing the P...
This work set out to explore the influence of kind and surface condition of carbon supports on the e...
The origin of the excellent electrocatalytic performance of PtRu alloy catalysts supported on newly ...
After electrochemical de-alloying, PtCu/C catalyst with a rich Pt shell demonstrated an enhanced ORR...
This research focuses on studying the effects of various pretreatment types on a PtCu/C catalyst syn...
Carbon-supported Pt–Cu alloy nanoparticles (Cu/Pt=2.6 on average) were obtained by a liquid precurso...
Carbon-supported Pt–Cu alloy nanoparticles (Cu/Pt=2.6 on average) were obtained by a liquid precurso...
A bimetallic Pt-Cu carbon-supported catalyst (Pt(Cu)/C) has been prepared by a room temperature two-...
A series of carbon supported PtRu bimetallic catalysts with varying Pt:Ru ratio were prepared and ch...
Pt3Cu nanoparticles are deposited on multi wall carbon nanotubes (MWCNT) according to three differen...
The effect of different alloying conditions (alloying temperature, annealing period) on the electroc...
Pt/Cu salt co-reduction and, subsequent reduction of Cu(acac)2 and PtCl2 allows to generate either a...
Bimetallic Pt-Cu carbon-supported catalysts (Pt(Cu)/C) were prepared by electroless deposition of Cu...
New highly active electrocatalysts were obtained by depositing bimetallic Pt-Cu nanoparticles on the...
Carbon supported platinum and platinum alloys (PtCo, PtNi and PtCu) for PEMFC cathodes were prepared...
Carbon supported Pt-Cu catalyst (PtCu/C) with surface enriched Pt was synthesized by annealing the P...
This work set out to explore the influence of kind and surface condition of carbon supports on the e...
The origin of the excellent electrocatalytic performance of PtRu alloy catalysts supported on newly ...
After electrochemical de-alloying, PtCu/C catalyst with a rich Pt shell demonstrated an enhanced ORR...
This research focuses on studying the effects of various pretreatment types on a PtCu/C catalyst syn...
Carbon-supported Pt–Cu alloy nanoparticles (Cu/Pt=2.6 on average) were obtained by a liquid precurso...
Carbon-supported Pt–Cu alloy nanoparticles (Cu/Pt=2.6 on average) were obtained by a liquid precurso...
A bimetallic Pt-Cu carbon-supported catalyst (Pt(Cu)/C) has been prepared by a room temperature two-...
A series of carbon supported PtRu bimetallic catalysts with varying Pt:Ru ratio were prepared and ch...
Pt3Cu nanoparticles are deposited on multi wall carbon nanotubes (MWCNT) according to three differen...
The effect of different alloying conditions (alloying temperature, annealing period) on the electroc...
Pt/Cu salt co-reduction and, subsequent reduction of Cu(acac)2 and PtCl2 allows to generate either a...
Bimetallic Pt-Cu carbon-supported catalysts (Pt(Cu)/C) were prepared by electroless deposition of Cu...
New highly active electrocatalysts were obtained by depositing bimetallic Pt-Cu nanoparticles on the...
Carbon supported platinum and platinum alloys (PtCo, PtNi and PtCu) for PEMFC cathodes were prepared...
Carbon supported Pt-Cu catalyst (PtCu/C) with surface enriched Pt was synthesized by annealing the P...
This work set out to explore the influence of kind and surface condition of carbon supports on the e...
The origin of the excellent electrocatalytic performance of PtRu alloy catalysts supported on newly ...