Bimetallic nanocrystals (NCs) enclosed by high-surface energy facets have been of enormous interest due to their pronounced catalytic performance in numerous chemical and electrochemical reactions. However, it remains a significant challenge to develop a facile method to synthesize bimetallic NCs with high-surface energy facets in the form of finely tuned structures due to the difficulties in manipulating the nucleation and growth kinetics of NCs in the presence of multiple metal precursors. In the present work, a facile one-pot aqueous synthesis method is developed for the production of bimetallic Au@Pd core–shell NCs with an unusual truncated hexoctahedral (THOH) shape without pre-synthesized seeds. The THOH Au@Pd NCs are bound by multipl...
In this work, core-shell (CS) Au@Pd nanoparticles (NPs) with about one Pd atomic layer (named C m S ...
Designed manipulation of the morphology of metallic nanostructures containing Pd and/or Pt represent...
Green transition requires strategies to develop active and stable nanomaterials for energy conversio...
The development of an efficient synthesis method to produce multimetallic nanoparticles (NPs) with a...
It is a known fact that Pd-based bimetallic nanostructures possess unique properties and excellent c...
Bimetallic Pt-Pd core-shell nanocrystals (NCs) are synthesized through a two-step process with contr...
Au@Pt nanocolloids with nanostructured dendritic Pt shells are successfully synthesized by chemicall...
Au–Pd nanocrystals are an intriguing system to study the integrated functions of localized surface p...
The exploration of efficient nanocatalysts with high activity and stability towards water electrolys...
In the synthesis of Au/Pd bimetallic nanocrystals, a layer-by-layer growth is favored, owing to the ...
Right to the core: The design of nanocatalysts with maximized catalytic performance relies on contro...
Pd or Pt alloyed with a secondary metal are the typical catalysts at the anode for the direct oxidat...
Tetrahexahedral, polyhedral, and branched Pd@Au core-shell nanostructures were selectively produced ...
Pd@Pt core-shell nanocrystals consisting of well-defined Pd nanocube cores and dendritic Pt shells w...
Systematically manipulating the shape, dimension, and surface structure of PdAu nanocrystals is an a...
In this work, core-shell (CS) Au@Pd nanoparticles (NPs) with about one Pd atomic layer (named C m S ...
Designed manipulation of the morphology of metallic nanostructures containing Pd and/or Pt represent...
Green transition requires strategies to develop active and stable nanomaterials for energy conversio...
The development of an efficient synthesis method to produce multimetallic nanoparticles (NPs) with a...
It is a known fact that Pd-based bimetallic nanostructures possess unique properties and excellent c...
Bimetallic Pt-Pd core-shell nanocrystals (NCs) are synthesized through a two-step process with contr...
Au@Pt nanocolloids with nanostructured dendritic Pt shells are successfully synthesized by chemicall...
Au–Pd nanocrystals are an intriguing system to study the integrated functions of localized surface p...
The exploration of efficient nanocatalysts with high activity and stability towards water electrolys...
In the synthesis of Au/Pd bimetallic nanocrystals, a layer-by-layer growth is favored, owing to the ...
Right to the core: The design of nanocatalysts with maximized catalytic performance relies on contro...
Pd or Pt alloyed with a secondary metal are the typical catalysts at the anode for the direct oxidat...
Tetrahexahedral, polyhedral, and branched Pd@Au core-shell nanostructures were selectively produced ...
Pd@Pt core-shell nanocrystals consisting of well-defined Pd nanocube cores and dendritic Pt shells w...
Systematically manipulating the shape, dimension, and surface structure of PdAu nanocrystals is an a...
In this work, core-shell (CS) Au@Pd nanoparticles (NPs) with about one Pd atomic layer (named C m S ...
Designed manipulation of the morphology of metallic nanostructures containing Pd and/or Pt represent...
Green transition requires strategies to develop active and stable nanomaterials for energy conversio...