A novel PtFe@Pt core-shell nanostructure with a PtFe bimetallic core and a nanodendrite Pt shell was fabricated through a facile aqueous reduction process. Without any capping agent and/or surfactant, a clean Pt surface can be obtained. The novel nanostrutured crystals show superior electrocatalytic performance towards methanol oxidation due to the enlarged Pt surface area and the modified electronic structure of Pt
Ag@Pt nanoparticles with various dendritic Pt shells were successfully synthesized by using nonionic...
Controlling the morphology of Pt nanostructures can provide a great opportunity to improve their cat...
The development of highly efficient fuel cell devices is largely impeded by the limited electrocatal...
Pd@Pt core-shell nanocrystals consisting of well-defined Pd nanocube cores and dendritic Pt shells w...
Au@Pt nanocolloids with nanostructured dendritic Pt shells are successfully synthesized by chemicall...
We for the first time report a facile, wet-chemical strategy for the high-yield (similar to 100%) sy...
To improve the catalytic performances of Pt-based catalysts toward the methanol oxidation reaction (...
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...
A new Pt nanocatalyst was synthesized by chemical reduction of K2PtCl4 by ascorbic acid in the prese...
One-pot synthesis Pt–Pd bimetallic nanostructure has become a promising way to get superior oxygen r...
The heterogeneously structured nanomaterials usually exhibit enhanced catalytic properties in compar...
Pt-based bimetallic nanostructures have attracted a great deal of attention due to their unique nano...
Core-shell nanostructures have been widely investigated to improve the electrocatalytic performance ...
One-pot creation of unique concave Pd-Pt core-shell polyhedra has been developed for the first time ...
Ag@Pt nanoparticles with various dendritic Pt shells were successfully synthesized by using nonionic...
Controlling the morphology of Pt nanostructures can provide a great opportunity to improve their cat...
The development of highly efficient fuel cell devices is largely impeded by the limited electrocatal...
Pd@Pt core-shell nanocrystals consisting of well-defined Pd nanocube cores and dendritic Pt shells w...
Au@Pt nanocolloids with nanostructured dendritic Pt shells are successfully synthesized by chemicall...
We for the first time report a facile, wet-chemical strategy for the high-yield (similar to 100%) sy...
To improve the catalytic performances of Pt-based catalysts toward the methanol oxidation reaction (...
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...
A new Pt nanocatalyst was synthesized by chemical reduction of K2PtCl4 by ascorbic acid in the prese...
One-pot synthesis Pt–Pd bimetallic nanostructure has become a promising way to get superior oxygen r...
The heterogeneously structured nanomaterials usually exhibit enhanced catalytic properties in compar...
Pt-based bimetallic nanostructures have attracted a great deal of attention due to their unique nano...
Core-shell nanostructures have been widely investigated to improve the electrocatalytic performance ...
One-pot creation of unique concave Pd-Pt core-shell polyhedra has been developed for the first time ...
Ag@Pt nanoparticles with various dendritic Pt shells were successfully synthesized by using nonionic...
Controlling the morphology of Pt nanostructures can provide a great opportunity to improve their cat...
The development of highly efficient fuel cell devices is largely impeded by the limited electrocatal...