Tuning the properties of palladium nanoparticles using different protecting ligand shells is an important step toward the application-orientated design of nanoparticles for nanoelectronics and catalysis. We present a density functional theoretical characterization of Pd-13 and Pd-55, metal cores protected by only thiol, only phosphine, and mixed phosphine-thiol ligand shells. We analyze the ligand contributions to the frontier orbitals and the charge redistribution between the ligand shell and the metal core and show that these properties control the values of the charging energy and the catalytic activity. The charge transfer character of the metal-ligand interaction is influenced by the presence of other ligands in the capping system indi...
We show computationally that ligation allows tuning of the magnetostructural properties of the Pd-13...
The catalytic, electrochemical, and optical properties of gold clusters and small nanoparticles depe...
In this work, we use density functional theory calculations with a hybrid exchange–correlation funct...
peer reviewedTuning the properties of Palladium nanoparticles using different protecting ligand shel...
peer reviewedTuning the properties of Palladium nanoparticles using different protecting ligand shel...
Tuning the properties of palladium nanoparticles using different protecting ligand shells is an impo...
Palladium nanostructures are widely used as catalyst of many organic reactions1 and present intrigui...
International audienceLigand stabilized clusters of palladium are treated at density functional theo...
International audienceLigand stabilized clusters of palladium are treated at density functional theo...
International audienceLigand stabilized clusters of palladium are treated at density functional theo...
Nanoparticles exhibit characteristics that are different from bulk materials as well as from atoms r...
International audienceThe catalytic, electrochemical, and optical properties of gold clusters and sm...
International audienceThe catalytic, electrochemical, and optical properties of gold clusters and sm...
International audienceThe catalytic, electrochemical, and optical properties of gold clusters and sm...
The catalytic, electrochemical, and optical properties of gold clusters and small nanoparticles depe...
We show computationally that ligation allows tuning of the magnetostructural properties of the Pd-13...
The catalytic, electrochemical, and optical properties of gold clusters and small nanoparticles depe...
In this work, we use density functional theory calculations with a hybrid exchange–correlation funct...
peer reviewedTuning the properties of Palladium nanoparticles using different protecting ligand shel...
peer reviewedTuning the properties of Palladium nanoparticles using different protecting ligand shel...
Tuning the properties of palladium nanoparticles using different protecting ligand shells is an impo...
Palladium nanostructures are widely used as catalyst of many organic reactions1 and present intrigui...
International audienceLigand stabilized clusters of palladium are treated at density functional theo...
International audienceLigand stabilized clusters of palladium are treated at density functional theo...
International audienceLigand stabilized clusters of palladium are treated at density functional theo...
Nanoparticles exhibit characteristics that are different from bulk materials as well as from atoms r...
International audienceThe catalytic, electrochemical, and optical properties of gold clusters and sm...
International audienceThe catalytic, electrochemical, and optical properties of gold clusters and sm...
International audienceThe catalytic, electrochemical, and optical properties of gold clusters and sm...
The catalytic, electrochemical, and optical properties of gold clusters and small nanoparticles depe...
We show computationally that ligation allows tuning of the magnetostructural properties of the Pd-13...
The catalytic, electrochemical, and optical properties of gold clusters and small nanoparticles depe...
In this work, we use density functional theory calculations with a hybrid exchange–correlation funct...