With a density functional theory method, we studied computationally the size dependence of adsorption properties of metal nanoparticles for CO as a probe on Pd <sub>n</sub> clusters with n = 13–116 atoms. For large particles, the values slowly decrease with cluster size from the asymptotic value for an (ideal) infinite surface. For clusters of 13–25 atoms, starting well above the asymptotic value, the adsorption energies drop quite steeply with increasing cluster size. These opposite trends meet in an intermediate size range, for clusters of 30–50 atoms, yielding the lowest adsorption energies. These computational results help to resolve a controversy on the size-dependent behavior of adsorption energies of metal nanoparticles
We present a discussion of recent experimental studies on the interaction of single CO molecules wit...
We report a density functional theory investigation of the adsorption properties of CO, NO, and OH o...
The activity of a surface is determined by the local electronic structure. When nano particles are a...
With a density functional theory method, we studied computationally the size dependence of adsorptio...
This study evaluates the finite size effect on the oxygen adsorption energy of coinage metal (Cu, Ag...
The physicochemical properties of materials are directly related to their size. The ability to under...
We have performed a theoretical study of pure metal nanoparticles (Pd/Pt/Au) and their interaction w...
Density functional theory calculations have been performed to investigate the use of CO as a probe m...
Catalytic properties of noble-metal nanoparticles (NPs) are largely determined by their surface morp...
This work reports for the first time the trends for carbon monoxide (CO) chemisorption on transition...
Nanoparticle properties are strongly correlated with their morphologies, such as shape and size. By ...
There exist a great many varieties of nanoparticles whose catalytic activities can be widely adjuste...
When the size of a reactant molecule is comparable to that of a nanometer catalyst (such as an aroma...
We present an approach to study nanocatalysis using density functional theory (DFT), statistical mec...
This thesis will focus on DFT for calculations of large metallic nanoparticles. It will show new alg...
We present a discussion of recent experimental studies on the interaction of single CO molecules wit...
We report a density functional theory investigation of the adsorption properties of CO, NO, and OH o...
The activity of a surface is determined by the local electronic structure. When nano particles are a...
With a density functional theory method, we studied computationally the size dependence of adsorptio...
This study evaluates the finite size effect on the oxygen adsorption energy of coinage metal (Cu, Ag...
The physicochemical properties of materials are directly related to their size. The ability to under...
We have performed a theoretical study of pure metal nanoparticles (Pd/Pt/Au) and their interaction w...
Density functional theory calculations have been performed to investigate the use of CO as a probe m...
Catalytic properties of noble-metal nanoparticles (NPs) are largely determined by their surface morp...
This work reports for the first time the trends for carbon monoxide (CO) chemisorption on transition...
Nanoparticle properties are strongly correlated with their morphologies, such as shape and size. By ...
There exist a great many varieties of nanoparticles whose catalytic activities can be widely adjuste...
When the size of a reactant molecule is comparable to that of a nanometer catalyst (such as an aroma...
We present an approach to study nanocatalysis using density functional theory (DFT), statistical mec...
This thesis will focus on DFT for calculations of large metallic nanoparticles. It will show new alg...
We present a discussion of recent experimental studies on the interaction of single CO molecules wit...
We report a density functional theory investigation of the adsorption properties of CO, NO, and OH o...
The activity of a surface is determined by the local electronic structure. When nano particles are a...