WOS: 000469292700029We fabricated magic number (C-70)(m)-(Au)(n) clusters on the Au(111) substrate. These clusters are stable at room temperature but display unpredictable rotational movement. The time duration between two successive rotations is in the order of similar to hour. The cluster rotation is a thermally activated process due to energy fluctuation, which is more significant for small clusters. We followed the rotational movement of (C-70)(10)-(Au)(35) clusters using scanning tunneling microscopy. Our observation suggests that thermal fluctuation leads to rapid diffusion of Au atoms at the edges of the cluster and the cluster has many metastable configurations associated with structural polymorphism
For many applications of well-defined gold nanoclusters, it is desirable to understand their structu...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
Pinned Au-70 clusters (see Figure) are stable against lateral diffusion to step edges at temperature...
We fabricated magic number (C70)m-(Au)n clusters on the Au(111) substrate. These clusters are stable...
WOS: 000497260100073Manipulation of C-70-Au hybrid nanoclusters was investigated using a scanning tu...
Manipulation of C70-Au hybrid nanoclusters was investigated using a scanning tunneling microscope (S...
Temperature-dependent dynamics of monolayer-protected Au and Ag nanoclusters and silver thiolates ha...
All nanostructures are metastable-but some are more metastable than others. Here we employ aberratio...
In this thesis, the nucleation, growth and mixing of C\(_{60}\) and C\(_{70}\) molecules are investi...
The atomic configuration of nanoparticles is key to their properties, in a way that resembles the st...
Molecular-dynamics simulations of stability and diffusion of two small clusters (formula presented) ...
We present a new approach to retard undesirable cluster aggregation. Using molecular dynamics simula...
We demonstrate cascade manipulation between magic number gold-fullerene hybrid clusters by channelli...
Pinned Au-70 clusters (see Figure) are stable against lateral diffusion to step edges at temperature...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
For many applications of well-defined gold nanoclusters, it is desirable to understand their structu...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
Pinned Au-70 clusters (see Figure) are stable against lateral diffusion to step edges at temperature...
We fabricated magic number (C70)m-(Au)n clusters on the Au(111) substrate. These clusters are stable...
WOS: 000497260100073Manipulation of C-70-Au hybrid nanoclusters was investigated using a scanning tu...
Manipulation of C70-Au hybrid nanoclusters was investigated using a scanning tunneling microscope (S...
Temperature-dependent dynamics of monolayer-protected Au and Ag nanoclusters and silver thiolates ha...
All nanostructures are metastable-but some are more metastable than others. Here we employ aberratio...
In this thesis, the nucleation, growth and mixing of C\(_{60}\) and C\(_{70}\) molecules are investi...
The atomic configuration of nanoparticles is key to their properties, in a way that resembles the st...
Molecular-dynamics simulations of stability and diffusion of two small clusters (formula presented) ...
We present a new approach to retard undesirable cluster aggregation. Using molecular dynamics simula...
We demonstrate cascade manipulation between magic number gold-fullerene hybrid clusters by channelli...
Pinned Au-70 clusters (see Figure) are stable against lateral diffusion to step edges at temperature...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
For many applications of well-defined gold nanoclusters, it is desirable to understand their structu...
High calcination temperatures are often required in nanoparticle synthesis and an understanding of h...
Pinned Au-70 clusters (see Figure) are stable against lateral diffusion to step edges at temperature...