Platinum, when used as a cathode material for the oxygen reduction reaction, suffers from high overpotential and possible dissolution, in addition to the scarcity of the metal and resulting cost. Although the introduction of cobalt has been reported to improve reaction kinetics and decrease the precious metal loading, surface segregation or complete leakage of Co atoms causes degradation of the membrane electrode assembly, and either of these scenarios of structural rearrangement eventually decreases catalytic power. Ternary PtCo alloys with noble metals could possibly maintain activity with a higher dissolution potential. First-principles-based theoretical methods are utilized to identify the critical factors affecting segregation in Pt–Co...
Polymer electrolyte fuel cells have shown great potential in providing clean energy with no emission...
A remaining challenge for deployment of proton-exchange membrane fuel cells is the limited durabili...
Catalyst is a substance that can increase or decrease the rate of reaction without modifying the ove...
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...
Environmental issues have attracted more and more public attention. Fuel cell, which is an energy co...
Significantly reducing platinum group metal (PGM) loading while improving catalytic performance and ...
Improving the CO tolerance of Pt-based catalysts is very meaningful for the application in proton ex...
One of the most important challenges in low-temperature fuel cell technology is improving the cataly...
In Pt-transition metal (TM) alloy catalysts, the electron transfer from the TM to Pt is retarded owi...
Due to their exceptional catalytic properties for the oxygen reduction reaction (ORR) and other cruc...
Pt-based alloy surfaces are used to catalyze the electrochemical oxygen reduction reaction (ORR), wh...
Platinum (Pt) alloy nanoparticles are used as catalysts in electrochemical cells to reduce oxygen to...
textDirect methanol fuel cells (DMFC) are being investigated as a portable energy conversion device ...
Pt alloy nanoparticles present the most probable candidate to be used as the cathode cathodic oxygen...
Polymer electrolyte fuel cells have shown great potential in providing clean energy with no emission...
A remaining challenge for deployment of proton-exchange membrane fuel cells is the limited durabili...
Catalyst is a substance that can increase or decrease the rate of reaction without modifying the ove...
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...
Environmental issues have attracted more and more public attention. Fuel cell, which is an energy co...
Significantly reducing platinum group metal (PGM) loading while improving catalytic performance and ...
Improving the CO tolerance of Pt-based catalysts is very meaningful for the application in proton ex...
One of the most important challenges in low-temperature fuel cell technology is improving the cataly...
In Pt-transition metal (TM) alloy catalysts, the electron transfer from the TM to Pt is retarded owi...
Due to their exceptional catalytic properties for the oxygen reduction reaction (ORR) and other cruc...
Pt-based alloy surfaces are used to catalyze the electrochemical oxygen reduction reaction (ORR), wh...
Platinum (Pt) alloy nanoparticles are used as catalysts in electrochemical cells to reduce oxygen to...
textDirect methanol fuel cells (DMFC) are being investigated as a portable energy conversion device ...
Pt alloy nanoparticles present the most probable candidate to be used as the cathode cathodic oxygen...
Polymer electrolyte fuel cells have shown great potential in providing clean energy with no emission...
A remaining challenge for deployment of proton-exchange membrane fuel cells is the limited durabili...
Catalyst is a substance that can increase or decrease the rate of reaction without modifying the ove...