NSERCPeer ReviewedBimetallic AuPd nanoparticles on alumina supports were prepared using Au25(SR)18 precursors activated by mild calcination or LiBH4 treatment, followed by selective deposition of Pd via ascorbic acid reduction. Comparison of their catalytic activity for the oxidation of crotyl alcohol showed that bimetallic structure had significantly improved catalysis compared to Pd/Al2O3. In particular, AuPd samples grown from LiBH4-activated Au25 clusters exhibit the highest catalytic activity as well as high selectivity towards crotonaldehyde formation, likely due to their smaller particle sizes as compared to AuPd samples grown from calcined Au25 clusters. X-ray absorption spectroscopy (XAS) at the Au L3-edge, Pd L3-edge and Pd K-edge...
The thermal evolution of titania-supported Au shell–Pd core bimetallic nanoparticles, prepared via c...
The research in this thesis involves the synthesis and characterization of nanoparticle catalysts fo...
A procedure to synthesize new Au–Pd bimetallic catalysts using Au and Pd vapours as reagents (metal ...
NSERCPeer ReviewedBimetallic AuPd nanoparticles on alumina supports were prepared using Au25(SR)18 p...
NSERCPeer ReviewedBimetallic AuPd nanoparticles on alumina supports were prepared using Au25(SR)18 p...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
NSERCPeer ReviewedGold–palladium core–shell nanoparticles have been previously shown to be extremely...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
NSERCPeer ReviewedGold–palladium core–shell nanoparticles have been previously shown to be extremely...
NSERCPeer ReviewedGold–palladium core–shell nanoparticles have been previously shown to be extremely...
The thermal evolution of titania-supported Au shell–Pd core bimetallic nanoparticles, prepared via c...
The thermal evolution of titania-supported Au shell–Pd core bimetallic nanoparticles, prepared via c...
The thermal evolution of titania-supported Au shell–Pd core bimetallic nanoparticles, prepared via c...
The research in this thesis involves the synthesis and characterization of nanoparticle catalysts fo...
A procedure to synthesize new Au–Pd bimetallic catalysts using Au and Pd vapours as reagents (metal ...
NSERCPeer ReviewedBimetallic AuPd nanoparticles on alumina supports were prepared using Au25(SR)18 p...
NSERCPeer ReviewedBimetallic AuPd nanoparticles on alumina supports were prepared using Au25(SR)18 p...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
NSERCPeer ReviewedGold–palladium core–shell nanoparticles have been previously shown to be extremely...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
NSERCPeer ReviewedGold–palladium core–shell nanoparticles have been previously shown to be extremely...
NSERCPeer ReviewedGold–palladium core–shell nanoparticles have been previously shown to be extremely...
The thermal evolution of titania-supported Au shell–Pd core bimetallic nanoparticles, prepared via c...
The thermal evolution of titania-supported Au shell–Pd core bimetallic nanoparticles, prepared via c...
The thermal evolution of titania-supported Au shell–Pd core bimetallic nanoparticles, prepared via c...
The research in this thesis involves the synthesis and characterization of nanoparticle catalysts fo...
A procedure to synthesize new Au–Pd bimetallic catalysts using Au and Pd vapours as reagents (metal ...