Pt-based electrocatalysts are by far the most effective for the hydrogen evolution reaction (HER) and oxygen reduction reaction (ORR), but they still suffer from high cost and insufficient overall performance. Improving Pt utilization via alloying or by forming core@shell structures is important for enhancing Pt activity and overall electrocatalytic performance. Herein, we report a simple seed-mediated method for synthesizing a dodecahedral PtCu alloy atomic shell on Pd nanocrystals. Significantly, such a Pd@PtCu nanocomposite with unique core@alloy-shell structure achieves a 25-fold and 6-fold enhancement of mass activity for HER and ORR, respectively, compared with the commercial Pt/C catalyst in acid media. Moreover, the unique Pd@PtCu c...
The development and commercialization of direct ethanol fuel cells requires active and durable elect...
International audienceLow-Pt based nanocrystals demonstrate potential as highly active catalysts for...
International audienceLow-Pt based nanocrystals demonstrate potential as highly active catalysts for...
State-of-the-art electrocatalysts for electrolyzer and fuel cell applications currently rely on plat...
Carbon supported Pt-Cu catalyst (PtCu/C) with surface enriched Pt was synthesized by annealing the P...
For optimizing the lattice strain and electron effect of Pt catalysts toward boosting their intrinsi...
For optimizing the lattice strain and electron effect of Pt catalysts toward boosting their intrinsi...
The oxygen reduction reaction (ORR) on the cathode of a polymer electrolyte fuel cell requires the u...
Forming core–shell and alloy structures offers generally two ways to design efficient Pt-based catal...
Bimetallic Pt-Pd core-shell nanocrystals (NCs) are synthesized through a two-step process with contr...
Bimetallic Pt-Pd core-shell nanocrystals (NCs) are synthesized through a two-step process with contr...
Exploring superior catalysts with high catalytic activity and durability is of significant for the d...
We demonstrate the synthesis of a core-shell catalyst consisting of a Pt monolayer as the shell and ...
International audienceLow-Pt based nanocrystals demonstrate potential as highly active catalysts for...
International audienceLow-Pt based nanocrystals demonstrate potential as highly active catalysts for...
The development and commercialization of direct ethanol fuel cells requires active and durable elect...
International audienceLow-Pt based nanocrystals demonstrate potential as highly active catalysts for...
International audienceLow-Pt based nanocrystals demonstrate potential as highly active catalysts for...
State-of-the-art electrocatalysts for electrolyzer and fuel cell applications currently rely on plat...
Carbon supported Pt-Cu catalyst (PtCu/C) with surface enriched Pt was synthesized by annealing the P...
For optimizing the lattice strain and electron effect of Pt catalysts toward boosting their intrinsi...
For optimizing the lattice strain and electron effect of Pt catalysts toward boosting their intrinsi...
The oxygen reduction reaction (ORR) on the cathode of a polymer electrolyte fuel cell requires the u...
Forming core–shell and alloy structures offers generally two ways to design efficient Pt-based catal...
Bimetallic Pt-Pd core-shell nanocrystals (NCs) are synthesized through a two-step process with contr...
Bimetallic Pt-Pd core-shell nanocrystals (NCs) are synthesized through a two-step process with contr...
Exploring superior catalysts with high catalytic activity and durability is of significant for the d...
We demonstrate the synthesis of a core-shell catalyst consisting of a Pt monolayer as the shell and ...
International audienceLow-Pt based nanocrystals demonstrate potential as highly active catalysts for...
International audienceLow-Pt based nanocrystals demonstrate potential as highly active catalysts for...
The development and commercialization of direct ethanol fuel cells requires active and durable elect...
International audienceLow-Pt based nanocrystals demonstrate potential as highly active catalysts for...
International audienceLow-Pt based nanocrystals demonstrate potential as highly active catalysts for...