We demonstrate potential applications for unusual dendrite like Au–Ag alloy nanoparticles formed via a galvanic replacement reaction in the ionic liquid [BMIM][BF4]. In comparison to Au–Ag alloy nanoshells synthesised via a similar reaction in water, the unusual branched structure of the dendritic materials led to increased electrocatalytic activity for the oxidation of both formaldehyde and hydrazine, and increased sensitivity and spectral resolution for the surface enhanced Raman scattering (SERS) of 4,4-bipyridal
Gold dendritic nanostructures with hyperbranched architectures were synthesized by the galvanic repl...
The galvanic replacement reaction is a highly versatile approach for the creation of a variety of na...
Fuel cells have important applications in recent decades due to high-energy demands, fossil fuel dep...
We demonstrate potential applications for unusual dendrite like Au-Ag alloy nanoparticles formed via...
Gold nanostructures exhibiting an interesting dendrite-like growth have been synthesized for the fir...
We demonstrate an unusual shape transformation of Ag nanospheres into {111}-oriented Au–Ag dendritic...
A simple and rapid solution-phase synthesis of dendritic gold nanostructures with hyperbranched arch...
Herein, reduced graphene oxide supported well-dispersed bimetallic AuPt alloy nano dendrites (AuPt A...
Large-scale arrays consist of dendritic single-crystalline Ag/Pd alloy nanostructures are synthesize...
A promising alternative route for the synthesis of three-dimensional Au dendrites was developed by d...
The galvanic replacement reaction is a highly versatile approach for the creation of a variety of na...
Numerous properties from metal nanostructures can be tuned by controlling both their size and shape....
An Au-Ag-Cu trimetallic nanodendrite was constructed by simple electrochemical methods and was evalu...
textAs computational methods for the prediction of metallic nanoparticle structure and reactivity co...
Abstract Highly branched metallic nanostructures, which possess a large amount of catalyst active si...
Gold dendritic nanostructures with hyperbranched architectures were synthesized by the galvanic repl...
The galvanic replacement reaction is a highly versatile approach for the creation of a variety of na...
Fuel cells have important applications in recent decades due to high-energy demands, fossil fuel dep...
We demonstrate potential applications for unusual dendrite like Au-Ag alloy nanoparticles formed via...
Gold nanostructures exhibiting an interesting dendrite-like growth have been synthesized for the fir...
We demonstrate an unusual shape transformation of Ag nanospheres into {111}-oriented Au–Ag dendritic...
A simple and rapid solution-phase synthesis of dendritic gold nanostructures with hyperbranched arch...
Herein, reduced graphene oxide supported well-dispersed bimetallic AuPt alloy nano dendrites (AuPt A...
Large-scale arrays consist of dendritic single-crystalline Ag/Pd alloy nanostructures are synthesize...
A promising alternative route for the synthesis of three-dimensional Au dendrites was developed by d...
The galvanic replacement reaction is a highly versatile approach for the creation of a variety of na...
Numerous properties from metal nanostructures can be tuned by controlling both their size and shape....
An Au-Ag-Cu trimetallic nanodendrite was constructed by simple electrochemical methods and was evalu...
textAs computational methods for the prediction of metallic nanoparticle structure and reactivity co...
Abstract Highly branched metallic nanostructures, which possess a large amount of catalyst active si...
Gold dendritic nanostructures with hyperbranched architectures were synthesized by the galvanic repl...
The galvanic replacement reaction is a highly versatile approach for the creation of a variety of na...
Fuel cells have important applications in recent decades due to high-energy demands, fossil fuel dep...