A straightforward method of synthesising Au@Pd core–shell particles on a well characterised γ-Fe2O3 (0001) substrate has been developed which will enable fundamental studies into the surface chemistry of these catalytically interesting systems. Au and Pd were sequentially deposited onto a γ-Fe2O3 (0001) substrate in ultra high vacuum by metal vapour deposition and probed by LEIS and STM. Deposition of Au followed by heating at 573 K formed nanoparticles of 5 to 10 nm in diameter whereas subsequent deposition of Pd produced smaller nanoparticles of 2 to 4 nm diameter. At this stage, LEIS shows both metals to be present but heating the combined system to 573 K resulted in the loss of the Au signal in the LEIS and disappearance of the smaller ...
The model bimetallic Pd-Au/HOPG catalysts have been investigated in CO oxidation reaction using comb...
Gold nanoparticles on transition metal oxides were synthesized by two different methods precipitati...
The use of AuPd nanoparticles in catalysis is widespread, with the activity being attributed to thei...
The transition from microscale to nanoscale materials design leads to immense changes of physical an...
In this work, we report a facile synthesis route, structural characterization, and full atomistic si...
ABSTRACT: This article describes the solution-phase synthesis of 4 nm gold nanoparticles with 0.7 at...
This article describes the solution-phase synthesis of 4 nm gold nanoparticles with 0.7 atom-thick, ...
A two-step seeded-growth method was refined to synthesize Au@Pd core@shell nanoparticles with thin P...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
A procedure to synthesize new Au–Pd bimetallic catalysts using Au and Pd vapours as reagents (metal ...
Highly active and stable bimetallic Au–Pd catalysts have been extensively studied for several liquid...
NSERCPeer ReviewedThis feature article covers a long‐term project in our laboratory at the Universit...
A procedure to synthesize new Au–Pd bimetallic catalysts using Au and Pd vapours as reagents (metal ...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
In order to design catalytic materials, we need to understand the essential causes for material prop...
The model bimetallic Pd-Au/HOPG catalysts have been investigated in CO oxidation reaction using comb...
Gold nanoparticles on transition metal oxides were synthesized by two different methods precipitati...
The use of AuPd nanoparticles in catalysis is widespread, with the activity being attributed to thei...
The transition from microscale to nanoscale materials design leads to immense changes of physical an...
In this work, we report a facile synthesis route, structural characterization, and full atomistic si...
ABSTRACT: This article describes the solution-phase synthesis of 4 nm gold nanoparticles with 0.7 at...
This article describes the solution-phase synthesis of 4 nm gold nanoparticles with 0.7 atom-thick, ...
A two-step seeded-growth method was refined to synthesize Au@Pd core@shell nanoparticles with thin P...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
A procedure to synthesize new Au–Pd bimetallic catalysts using Au and Pd vapours as reagents (metal ...
Highly active and stable bimetallic Au–Pd catalysts have been extensively studied for several liquid...
NSERCPeer ReviewedThis feature article covers a long‐term project in our laboratory at the Universit...
A procedure to synthesize new Au–Pd bimetallic catalysts using Au and Pd vapours as reagents (metal ...
The development of model catalyst systems for heterogeneous catalysis going beyond the metal single ...
In order to design catalytic materials, we need to understand the essential causes for material prop...
The model bimetallic Pd-Au/HOPG catalysts have been investigated in CO oxidation reaction using comb...
Gold nanoparticles on transition metal oxides were synthesized by two different methods precipitati...
The use of AuPd nanoparticles in catalysis is widespread, with the activity being attributed to thei...