Precisely tailoring the structure and fully making use of the components of nanoparticles are effective to enhance their catalytic performance for a given reaction. We herein demonstrate the design of cage-bell structured Pt-Pd nanoparticles, where a Pd shell is deliberately selected to enhance the catalytic property and methanol tolerance of Pt for oxygen reduction reaction. This strategy starts with the synthesis of core-shell Pt@Ag nanoparticles, followed by galvanic replacement reaction between the Ag shell and Pd2+ ions to form core-shell-shell Pt@Ag@Ag-Pd nanoparticles with a Pt core and double shells composed of Ag at inner and alloy Ag-Pd at outer, respectively. Then, the core-shell-shell templates are agitated with saturated NaCl s...
We report a facile synthesis of Pt-Pd bimetallic nanoparticles, named "metallic nanocages", with a h...
Pd@Pt core-shell nanocrystals consisting of well-defined Pd nanocube cores and dendritic Pt shells w...
Hollow PdPt nanocages were prepared by applying Potential cycling treatment on core shell Pd@Pt nano...
Mastery over the structure of nanoparticles might be an effective way to enhance their performance f...
Core-shell structured Au-PtPd/C and Au-Pt/C nanoparticles (NPs) were prepared using a successive red...
Controlling the morphology of Pt nanostructures can provide a great opportunity to improve their cat...
Mastery over the structure of nanomaterials enables control of their properties and enhancement of t...
Core-shell nanoparticles often exhibit improved catalytic properties due to the lattice strain creat...
The nanoarchitectonics design is very important for tuning the catalytic performance of the Pt-based...
Bimetallic Pt-Pd core-shell nanocrystals (NCs) are synthesized through a two-step process with contr...
Improving the electrocatalytic activity and durability of Pt-based catalysts with low Pt content tow...
Heterogeneous Au-Pt nanostructures have been synthesized using a sacrificial template-based approach...
Bimetallic Pt-Pd core-shell nanocrystals (NCs) are synthesized through a two-step process with contr...
One-pot creation of unique concave Pd-Pt core-shell polyhedra has been developed for the first time ...
We report a facile synthesis of Pt-Pd bimetallic nanoparticles, named "metallic nanocages", with a h...
We report a facile synthesis of Pt-Pd bimetallic nanoparticles, named "metallic nanocages", with a h...
Pd@Pt core-shell nanocrystals consisting of well-defined Pd nanocube cores and dendritic Pt shells w...
Hollow PdPt nanocages were prepared by applying Potential cycling treatment on core shell Pd@Pt nano...
Mastery over the structure of nanoparticles might be an effective way to enhance their performance f...
Core-shell structured Au-PtPd/C and Au-Pt/C nanoparticles (NPs) were prepared using a successive red...
Controlling the morphology of Pt nanostructures can provide a great opportunity to improve their cat...
Mastery over the structure of nanomaterials enables control of their properties and enhancement of t...
Core-shell nanoparticles often exhibit improved catalytic properties due to the lattice strain creat...
The nanoarchitectonics design is very important for tuning the catalytic performance of the Pt-based...
Bimetallic Pt-Pd core-shell nanocrystals (NCs) are synthesized through a two-step process with contr...
Improving the electrocatalytic activity and durability of Pt-based catalysts with low Pt content tow...
Heterogeneous Au-Pt nanostructures have been synthesized using a sacrificial template-based approach...
Bimetallic Pt-Pd core-shell nanocrystals (NCs) are synthesized through a two-step process with contr...
One-pot creation of unique concave Pd-Pt core-shell polyhedra has been developed for the first time ...
We report a facile synthesis of Pt-Pd bimetallic nanoparticles, named "metallic nanocages", with a h...
We report a facile synthesis of Pt-Pd bimetallic nanoparticles, named "metallic nanocages", with a h...
Pd@Pt core-shell nanocrystals consisting of well-defined Pd nanocube cores and dendritic Pt shells w...
Hollow PdPt nanocages were prepared by applying Potential cycling treatment on core shell Pd@Pt nano...