Bimetallic Pd-Au nanoclusters were prepared on SiO2/Si(100) via amorphous solid water (ASW) as buffer layer. Selective growth pathways have led to segregated palladium and gold clusters or alloy bimetallic crystallites. Morphology and chemical composition were determined by AFM, SEM, and HR-TEM coupled to EDX analysis. Correlation between clusters morphology and composition to their chemical reactivity is reported for the first time. Temperature programmed reaction studies revealed that conversion of acetylene to ethylene and trimerization to benzene are significantly enhanced over crystalline alloy Pd-Au clusters when compared to clean Pd. A remarkable selectivity toward ethylene formation over benzene is unique to the alloy bimetallic clu...
NSERCPeer ReviewedBimetallic AuPd nanoparticles on alumina supports were prepared using Au25(SR)18 p...
Thiolate protected gold nanoclusters have gained substantial attention due to their atomically preci...
Bimetallic nanoparticles can lead to catalysts with improved turnover rates and selectivities, but m...
Recently, a so-called 'crown-jewel' concept of preparation of Au/Pd-based colloidal nanoclusters has...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
Changes in the size distribution and composition of bimetallic Pd-Au nanoclusters have been observed...
Abstract: Silica supported Pd-Au bimetallic catalysts are highly selective for the acetoxylation of ...
The structure, stability, and catalytic properties of an unusual bimetallic colloid having a well-de...
Due to the great potential to improve catalytic performance, gold (Au) and palladium (Pd) bimetallic...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
Sequential ion implantation has been used to synthesize Pd-based alloy nanoclusters in SiO2. Three s...
NSERCPeer ReviewedThis work examines the reaction between Au25(SC8H9)18– clusters with palladium ace...
AuPd, AuPt, and PdPt bimetallic clusters uniform in size and composition were prepared using hydroth...
Bimetallic Pd–Au clusters with (Pd/Au)<sub>at</sub> compositions of 0.5, 1.0, and 2.0 narrowly distr...
NSERCPeer ReviewedBimetallic AuPd nanoparticles on alumina supports were prepared using Au25(SR)18 p...
Thiolate protected gold nanoclusters have gained substantial attention due to their atomically preci...
Bimetallic nanoparticles can lead to catalysts with improved turnover rates and selectivities, but m...
Recently, a so-called 'crown-jewel' concept of preparation of Au/Pd-based colloidal nanoclusters has...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
Changes in the size distribution and composition of bimetallic Pd-Au nanoclusters have been observed...
Abstract: Silica supported Pd-Au bimetallic catalysts are highly selective for the acetoxylation of ...
The structure, stability, and catalytic properties of an unusual bimetallic colloid having a well-de...
Due to the great potential to improve catalytic performance, gold (Au) and palladium (Pd) bimetallic...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
Sequential ion implantation has been used to synthesize Pd-based alloy nanoclusters in SiO2. Three s...
NSERCPeer ReviewedThis work examines the reaction between Au25(SC8H9)18– clusters with palladium ace...
AuPd, AuPt, and PdPt bimetallic clusters uniform in size and composition were prepared using hydroth...
Bimetallic Pd–Au clusters with (Pd/Au)<sub>at</sub> compositions of 0.5, 1.0, and 2.0 narrowly distr...
NSERCPeer ReviewedBimetallic AuPd nanoparticles on alumina supports were prepared using Au25(SR)18 p...
Thiolate protected gold nanoclusters have gained substantial attention due to their atomically preci...
Bimetallic nanoparticles can lead to catalysts with improved turnover rates and selectivities, but m...