Porous Pt-based nanostructures are highly promising electrocatalysts for fuel cells, because of their high catalytic surface area and sufficient catalytically active sites. Herein, we adopt a facile method in aqueous solution to synthesize the Au@PtPd mesoporous nanorod (Au@PtPd MNR) in which a Au nanorod (NR) serves as core, and mesoporous PtPd acts as shell. Because of the mesoporous core–shell structure and composition effect, Au@PtPd MNR exhibits superior catalytic activity and durability for the oxygen reduction reaction (ORR), as compared with PtPd mesoporous sphere (MS), Au@Pt MNR, and commercial Pt/C catalyst. This synthetic strategy is appropriate for preparation of other mesoporous core–shell structures for various promising appli...
Bimetallic nanoparticles with core-shell structures usually display enhanced catalytic properties ...
A facile design of Pt nanostructures from submonolayer to monolayer has been realized by ion adsorpt...
Au/Pt core shell nanoparticles (NPs) have been prepared via a layer-by-layer growth of Pt layers on ...
Through a bromide-induced galvanic replacement reaction between Pd nanowires and K2PtCl6, PtPd porou...
International audienceBy effectively bypassing the common problem of the loss of contact of platinum...
Currently, Pt-based nanomaterials with tailorable shapes, structures, and morphologies are the most ...
By effectively bypassing the common problem of the loss of contact of platinum nanoparticles to carb...
Platinum (Pt)-based multi-metallic nanostructures show great promise as electrocatalysts for the oxy...
Ultra-low Pt catalysts with Pt(shell)-Au(core) nanostructure were prepared by seed mediate method fo...
Au@Pt nanocolloids with nanostructured dendritic Pt shells are successfully synthesized by chemicall...
Core- shell nanocatalysts have demonstrated potential as highly active low-Pt fuel cell cathodes for...
Fabricating Pt-alloy and core-shell nanostructures with Au NPs in the cores are considered as two ge...
We showed earlier that using Au nanoparticles of ca. 3.5 nm for the cores to construct core-shell Au...
In this work, an electrochemical methodology consisting of electrodeposition in ionic liquid-in wate...
The development of an efficient synthesis method to produce multimetallic nanoparticles (NPs) with a...
Bimetallic nanoparticles with core-shell structures usually display enhanced catalytic properties ...
A facile design of Pt nanostructures from submonolayer to monolayer has been realized by ion adsorpt...
Au/Pt core shell nanoparticles (NPs) have been prepared via a layer-by-layer growth of Pt layers on ...
Through a bromide-induced galvanic replacement reaction between Pd nanowires and K2PtCl6, PtPd porou...
International audienceBy effectively bypassing the common problem of the loss of contact of platinum...
Currently, Pt-based nanomaterials with tailorable shapes, structures, and morphologies are the most ...
By effectively bypassing the common problem of the loss of contact of platinum nanoparticles to carb...
Platinum (Pt)-based multi-metallic nanostructures show great promise as electrocatalysts for the oxy...
Ultra-low Pt catalysts with Pt(shell)-Au(core) nanostructure were prepared by seed mediate method fo...
Au@Pt nanocolloids with nanostructured dendritic Pt shells are successfully synthesized by chemicall...
Core- shell nanocatalysts have demonstrated potential as highly active low-Pt fuel cell cathodes for...
Fabricating Pt-alloy and core-shell nanostructures with Au NPs in the cores are considered as two ge...
We showed earlier that using Au nanoparticles of ca. 3.5 nm for the cores to construct core-shell Au...
In this work, an electrochemical methodology consisting of electrodeposition in ionic liquid-in wate...
The development of an efficient synthesis method to produce multimetallic nanoparticles (NPs) with a...
Bimetallic nanoparticles with core-shell structures usually display enhanced catalytic properties ...
A facile design of Pt nanostructures from submonolayer to monolayer has been realized by ion adsorpt...
Au/Pt core shell nanoparticles (NPs) have been prepared via a layer-by-layer growth of Pt layers on ...