The ability to control nanoscale alloying and phase segregation properties is important for the exploration of multimetallic nanoparticles for the design of advanced functional materials and catalysts. This report highlights recent insights into the nanoscale phase properties of goldplatinum (AuPt) nanoparticles, which serves as an example to shine a light on the importance of changes in physical and chemical properties in which nanoscale multimetallic materials may differ from their bulk counterparts. In contrast to the wide miscibility gap well known for the bulk gold-platinum system, the bimetallic nanoparticles have been demonstrated to exist in phases ranging from alloy, partial alloy, to phase segregation depending on the preparation ...
ABSTRACT: Nanoalloys of gold and platinum show special chemical qualities. As catalysts, for example...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
We report on the correlation between the nanocrystal and surface alloy properties with the bimetalli...
AbstractWe report on the correlation between the nanocrystal and surface alloy properties with the b...
The water gas shift (WGS) reaction plays an important role for hydrogen production from fossil and r...
ABSTRACT: This article describes the solution-phase synthesis of 4 nm gold nanoparticles with 0.7 at...
Gold–copper and platinum–nickel nanocluster alloys are currently being investigated world–wide by ma...
This article describes the solution-phase synthesis of 4 nm gold nanoparticles with 0.7 atom-thick, ...
The formation of nanosized alloys between a pair of elements, which are largely immiscible in bulk, ...
The ability to tune the atomic-level structure of alloy nanoparticles (NPs) is essential for the des...
In most experimental studies on bimetallic nanoparticles the homogeneous alloying is consistently re...
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...
Understanding of the atomic-scale structure is essential for exploiting the unique catalytic propert...
ABSTRACT: Nanoalloys of gold and platinum show special chemical qualities. As catalysts, for example...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...
We report on the correlation between the nanocrystal and surface alloy properties with the bimetalli...
AbstractWe report on the correlation between the nanocrystal and surface alloy properties with the b...
The water gas shift (WGS) reaction plays an important role for hydrogen production from fossil and r...
ABSTRACT: This article describes the solution-phase synthesis of 4 nm gold nanoparticles with 0.7 at...
Gold–copper and platinum–nickel nanocluster alloys are currently being investigated world–wide by ma...
This article describes the solution-phase synthesis of 4 nm gold nanoparticles with 0.7 atom-thick, ...
The formation of nanosized alloys between a pair of elements, which are largely immiscible in bulk, ...
The ability to tune the atomic-level structure of alloy nanoparticles (NPs) is essential for the des...
In most experimental studies on bimetallic nanoparticles the homogeneous alloying is consistently re...
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...
Understanding of the atomic-scale structure is essential for exploiting the unique catalytic propert...
ABSTRACT: Nanoalloys of gold and platinum show special chemical qualities. As catalysts, for example...
Au nanoparticles are known to be a good catalyst or an effective promoter for a wide range of cataly...
One of the best methods for producing bulk homogeneous (composition) supported bimetallic AuPd clust...