The electrochemical stability of Pt deposited on mesoporous carbon, which was either applied in its unmodified state or coated with 20 wt% TiO2, was investigated by cyclic voltammetry in N2 purged 0.5M sulfuric acid. XRD analysis revealed that TiO2 was present in the anatase phase. The mean Pt particle diameter was ?6 and ?4 nm for mesoporous carbon with and without TiO2, respectively. Pt supported on TiO2 modified substrates was more stable than Pt supported on conventional mesoporous carbon when subjected to 1000 cycles in the potential range from 0.05 to 1.25V vs. RHE. This was evident from the observation that the support with TiO2 retained ?53% of the electrochemically active surface area relative to the state observed after 100 cycles...
We report a simple, scalable approach to improve interfacial characteristics of carbon semi-coated t...
Pt catalysts supported on titanium suboxide (Ti4O7), commercial TiO2 and carbon black were prepared ...
Designing efficient anode CO-tolerant electrocatalysts is critical in low-temperature fuel cell cata...
Anatase TiO 2 is evaluated as catalyst support material in authentic Pt-TiO 2 /C composite gas diff...
International audienceThis work was carried out to explore the effect of TiO2 on activity and stabil...
Cyclic voltammetry (CV) measurements were conducted and analyzed for a preliminary estimation of the...
The electrochemical stability of Pt deposited on TiO2 based nanofibers was compared with commerciall...
Carbon corrosion is a severe issue limiting the long-term stability of carbon-supported catalysts, ...
Further improvements and mechanistic understanding of the electrocatalytic enhancements towards the ...
Durability is central to the commercialization of polymer electrolyte fuel cells (PEFCs). The incorp...
Pt nanoparticles (Pt NPs) supported on carbon have been widely employed as electrocatalysts toward o...
Proton exchange membrane fuel cells (PEMFCs) are electrochemical energy devices which have become a ...
Ta modified TiO2 was synthesized using a sol-gel procedure and evaluated for use as an electrocataly...
International audienceThe low durability of Pt/C electro-catalysts in polymer electrolyte membrane f...
Carbon-supported Pt-TiO2 (Pt-TiO2/C) catalysts with varying at. wt ratios of Pt to Ti, namely, 1:1, ...
We report a simple, scalable approach to improve interfacial characteristics of carbon semi-coated t...
Pt catalysts supported on titanium suboxide (Ti4O7), commercial TiO2 and carbon black were prepared ...
Designing efficient anode CO-tolerant electrocatalysts is critical in low-temperature fuel cell cata...
Anatase TiO 2 is evaluated as catalyst support material in authentic Pt-TiO 2 /C composite gas diff...
International audienceThis work was carried out to explore the effect of TiO2 on activity and stabil...
Cyclic voltammetry (CV) measurements were conducted and analyzed for a preliminary estimation of the...
The electrochemical stability of Pt deposited on TiO2 based nanofibers was compared with commerciall...
Carbon corrosion is a severe issue limiting the long-term stability of carbon-supported catalysts, ...
Further improvements and mechanistic understanding of the electrocatalytic enhancements towards the ...
Durability is central to the commercialization of polymer electrolyte fuel cells (PEFCs). The incorp...
Pt nanoparticles (Pt NPs) supported on carbon have been widely employed as electrocatalysts toward o...
Proton exchange membrane fuel cells (PEMFCs) are electrochemical energy devices which have become a ...
Ta modified TiO2 was synthesized using a sol-gel procedure and evaluated for use as an electrocataly...
International audienceThe low durability of Pt/C electro-catalysts in polymer electrolyte membrane f...
Carbon-supported Pt-TiO2 (Pt-TiO2/C) catalysts with varying at. wt ratios of Pt to Ti, namely, 1:1, ...
We report a simple, scalable approach to improve interfacial characteristics of carbon semi-coated t...
Pt catalysts supported on titanium suboxide (Ti4O7), commercial TiO2 and carbon black were prepared ...
Designing efficient anode CO-tolerant electrocatalysts is critical in low-temperature fuel cell cata...