The fabrication of a novel electrode architecture with multi-scale orderliness is an effective strategy to enhance Pt utilization and decrease the mass transport polarization loss of proton exchange membrane fuel cells (PEMFCs). Here we report a hierarchically well-defined electrode with Pt nanowhiskers on aligned nanowires by a magnetron sputtering method. With the crystallographically preferential growth of Pt (111) facets, in association with the electron modification effects of PANI on Pt nanowhiskers, the electrode achieves outstanding electrochemical activity towards the oxygen reduction reaction (ORR) with a 2.19-fold enhancement of the specific activity and a similar mass specific activity at 0.9 V (vs. the RHE), compared to the sta...
Oxygen reduction reaction (ORR) and hydrogen evolution (HER) are two critical electro-chemical react...
Highly ordered hierarchical Pt and PtNi nanowire arrays were prepared using CdS hierarchical nanowir...
The degradation of the carbon supports and high platinum (Pt) loading significantly hinder the wide ...
The significant use of platinum for catalyzing the cathodic oxygen reduction reactions (ORRs) has ha...
PtNi alloy and hybrid structures have shown impressive catalytic activities toward the cathodic oxyg...
Membrane electrode assemblies (MEA) for fuel cells require optimization of their nanoscale organizat...
Lowering the cost of platinum (Pt)-based oxygen reduction reaction (ORR) electrocatalysts is a signi...
International audienceThe cathode is the most crucial component of the PEMFC because the most limiti...
Polymer electrolyte membrane fuel cell, PEMFC is an electrochemical energy conversion device that ha...
Fabrication of novel electrode architectures with tailored electrochemical interfaces (EI) is an eff...
Fabrication of novel electrode architectures with tailored electrochemical interfaces (EI) is an eff...
Proton exchange membrane fuel cells (PEMFCs) offer an attractive zero-emission power generation tech...
A novel electrode (E-P electrode) with a nanofiber structure and Pd/C@dendritic Pt catalysts is prep...
To reduce the required high loading of Pt to catalyse the sluggish oxygen reduction reaction (ORR) a...
Porous Pt nanowire arrays show enhanced electrocatalytic activities for ethanol oxidation in direct ...
Oxygen reduction reaction (ORR) and hydrogen evolution (HER) are two critical electro-chemical react...
Highly ordered hierarchical Pt and PtNi nanowire arrays were prepared using CdS hierarchical nanowir...
The degradation of the carbon supports and high platinum (Pt) loading significantly hinder the wide ...
The significant use of platinum for catalyzing the cathodic oxygen reduction reactions (ORRs) has ha...
PtNi alloy and hybrid structures have shown impressive catalytic activities toward the cathodic oxyg...
Membrane electrode assemblies (MEA) for fuel cells require optimization of their nanoscale organizat...
Lowering the cost of platinum (Pt)-based oxygen reduction reaction (ORR) electrocatalysts is a signi...
International audienceThe cathode is the most crucial component of the PEMFC because the most limiti...
Polymer electrolyte membrane fuel cell, PEMFC is an electrochemical energy conversion device that ha...
Fabrication of novel electrode architectures with tailored electrochemical interfaces (EI) is an eff...
Fabrication of novel electrode architectures with tailored electrochemical interfaces (EI) is an eff...
Proton exchange membrane fuel cells (PEMFCs) offer an attractive zero-emission power generation tech...
A novel electrode (E-P electrode) with a nanofiber structure and Pd/C@dendritic Pt catalysts is prep...
To reduce the required high loading of Pt to catalyse the sluggish oxygen reduction reaction (ORR) a...
Porous Pt nanowire arrays show enhanced electrocatalytic activities for ethanol oxidation in direct ...
Oxygen reduction reaction (ORR) and hydrogen evolution (HER) are two critical electro-chemical react...
Highly ordered hierarchical Pt and PtNi nanowire arrays were prepared using CdS hierarchical nanowir...
The degradation of the carbon supports and high platinum (Pt) loading significantly hinder the wide ...