Pt alloy nanoparticles present the most probable candidate to be used as the cathode cathodic oxygen reduction reaction electrocatalyst for achieving commercialization targets of the low-temperature fuel cells. It is therefore very important to understand its activation and degradation processes. Besides the ones known from the pure Pt electrocatalysts, the dealloying phenomena possess a great threat since the leached less-noble metal can interact with the polymer membrane or even poison the electrocatalyst. In this study, we present a solution, supported by in-depth advance electrochemical characterization, on how to suppress the removal of Cu from the Pt alloy nanoparticles
ence re used forma.0 time ards M Keywords: Fuel cells possibly due to reduction in the number of Pt ...
Pt(Cu) nanoparticles supported on carbon nanofibers (CNFs), multi-walled carbon nanotubes (MWCNTs) a...
Carbon-supported Pt–Cu alloy nanoparticles (Cu/Pt=2.6 on average) were obtained by a liquid precurso...
Pt alloy nanoparticles present the most probable candidate to be used as the cathode cathodic oxygen...
Pt(Cu) nanoparticles supported on CMK3 and CMK8 ordered mesoporous carbons (OMCs) have been synthesi...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
\u3cp\u3eCarbon-supported Pt–Cu alloy nanoparticles (Cu/Pt=2.6 on average) were obtained by a liquid...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
Here we show, combining CO stripping voltammograms on different PtCu nanoparticle (NP) low-temperatu...
The development and commercialization of direct ethanol fuel cells requires active and durable elect...
A remaining challenge for deployment of proton-exchange membrane fuel cells is the limited durabili...
AbstractWithin the search for new catalysts for the oxygen reduction reaction in polymer electrolyte...
A promising electrocatalyst prototype of low Pt mole fraction, intermetallic nanoparticles of Cu<sub...
Developing highly active and durable oxygen reduction reaction (ORR) catalysts is crucial to reduce ...
Carbon supported Pt-Cu catalyst (PtCu/C) with surface enriched Pt was synthesized by annealing the P...
ence re used forma.0 time ards M Keywords: Fuel cells possibly due to reduction in the number of Pt ...
Pt(Cu) nanoparticles supported on carbon nanofibers (CNFs), multi-walled carbon nanotubes (MWCNTs) a...
Carbon-supported Pt–Cu alloy nanoparticles (Cu/Pt=2.6 on average) were obtained by a liquid precurso...
Pt alloy nanoparticles present the most probable candidate to be used as the cathode cathodic oxygen...
Pt(Cu) nanoparticles supported on CMK3 and CMK8 ordered mesoporous carbons (OMCs) have been synthesi...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
\u3cp\u3eCarbon-supported Pt–Cu alloy nanoparticles (Cu/Pt=2.6 on average) were obtained by a liquid...
Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overp...
Here we show, combining CO stripping voltammograms on different PtCu nanoparticle (NP) low-temperatu...
The development and commercialization of direct ethanol fuel cells requires active and durable elect...
A remaining challenge for deployment of proton-exchange membrane fuel cells is the limited durabili...
AbstractWithin the search for new catalysts for the oxygen reduction reaction in polymer electrolyte...
A promising electrocatalyst prototype of low Pt mole fraction, intermetallic nanoparticles of Cu<sub...
Developing highly active and durable oxygen reduction reaction (ORR) catalysts is crucial to reduce ...
Carbon supported Pt-Cu catalyst (PtCu/C) with surface enriched Pt was synthesized by annealing the P...
ence re used forma.0 time ards M Keywords: Fuel cells possibly due to reduction in the number of Pt ...
Pt(Cu) nanoparticles supported on carbon nanofibers (CNFs), multi-walled carbon nanotubes (MWCNTs) a...
Carbon-supported Pt–Cu alloy nanoparticles (Cu/Pt=2.6 on average) were obtained by a liquid precurso...