Core@shell structured bimetallic nanoparticles are currently of immense interest due to their unique electronic, optical and catalytic properties. However, their synthesis is non-trivial. We report a new supramolecular route for the synthesis of core@shell nanoparticles, based on an anion coordination protocol-the first to function by binding the shell metal to the surface of the pre-formed primary metal core before reduction. The resultant gold/palladium and platinum/palladium core@shell nanoparticles have been characterized by aberration-corrected scanning transmission electron microscopy (as well as other techniques), giving striking atomic-resolution images of the core@shell architecture, and the unique catalytic properties of the struc...
An in situ seeding growth methodology towards the preparation of core–shell nanoparticles composed o...
Right to the core: The design of nanocatalysts with maximized catalytic performance relies on contro...
We report herewith a simple and versatile route for the preparation of anisotropic Ag(AgCl)-Pt core-...
Core@shell structured bimetallic nanoparticles are currently of immense interest due to their unique...
Bimetallic core–shell nanoparticles have recently emerged as a new class of functional materials bec...
Core-shell particles with thin noble metal shells represent an attractive material class with potent...
An in situ seeding growth methodology towards the preparation of core-shell nanoparticles composed o...
AbstractIn this work, we report the preparation of bimetallic core-shell nanoparticles (NPs) using a...
Bimetallic core–shell nanoparticles have recently emerged as a new class of functional materials bec...
A continuing goal in catalysis research is to engineer the composition and structure of noble metal ...
Metal nanoparticles have a large surface area to volume ratio compared to their bulk counterparts, w...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
Au@Pt nanocolloids with nanostructured dendritic Pt shells are successfully synthesized by chemicall...
Bimetallic core/shell nanoparticles (NPs) are the subject of intense research due to their unique el...
There has been much interest in colloidal noble metal nanoparticles due to their fascinating plasmon...
An in situ seeding growth methodology towards the preparation of core–shell nanoparticles composed o...
Right to the core: The design of nanocatalysts with maximized catalytic performance relies on contro...
We report herewith a simple and versatile route for the preparation of anisotropic Ag(AgCl)-Pt core-...
Core@shell structured bimetallic nanoparticles are currently of immense interest due to their unique...
Bimetallic core–shell nanoparticles have recently emerged as a new class of functional materials bec...
Core-shell particles with thin noble metal shells represent an attractive material class with potent...
An in situ seeding growth methodology towards the preparation of core-shell nanoparticles composed o...
AbstractIn this work, we report the preparation of bimetallic core-shell nanoparticles (NPs) using a...
Bimetallic core–shell nanoparticles have recently emerged as a new class of functional materials bec...
A continuing goal in catalysis research is to engineer the composition and structure of noble metal ...
Metal nanoparticles have a large surface area to volume ratio compared to their bulk counterparts, w...
Noble metals are the most sought after elements for catalysis because of their versatility, activity...
Au@Pt nanocolloids with nanostructured dendritic Pt shells are successfully synthesized by chemicall...
Bimetallic core/shell nanoparticles (NPs) are the subject of intense research due to their unique el...
There has been much interest in colloidal noble metal nanoparticles due to their fascinating plasmon...
An in situ seeding growth methodology towards the preparation of core–shell nanoparticles composed o...
Right to the core: The design of nanocatalysts with maximized catalytic performance relies on contro...
We report herewith a simple and versatile route for the preparation of anisotropic Ag(AgCl)-Pt core-...