We report a comparative study of the magnetic properties of free-standing PdN clusters (2 ≤N ≤21) obtained through two different theoretical approaches that are extensively employed in electronic structure calculations: a semi-empirical Tight-Binding (TB) model and an ab-initio DFT pseudopotential model. Conclusions are drawn about the reliability of the TB model for the investigation of the electronic structure and magnetic properties of such complex 4d Transition Metals (TM) systems and we compare the results with previous systematic DFT calculations and comment on some available experiments in the literature
International audienceNeutral, ligand-free Pdn clusters, n = 2–309, are investigated using density f...
The geometrical structure, atomic ordering, electronic and magnetic properties of closed shell Con P...
PACS. 36.40Cg – Electronic and magnetic properties of clusters. PACS. 75.40Mg – Numerical simulation...
We report a comparative study of the magnetic properties of free-standing PdN clusters (2 ≤ N ≤...
A systematic study of the colineal and no-colineal magnetic properties and the metallic behavior in ...
The current focus of material science researchers is on the magnetic behavior of transition metal cl...
Palladium nanostructures are widely used as catalyst of many organic reactions1 and present intrigui...
Here we report a systematic theoretical study of the equilibrium structures, electronic and magnetic...
In this paper, the structural, magnetic, and electronic properties of two- to nine-atom copper and s...
The influence of U doping on the structural, electronic and magnetic properties of Pdn c...
We analyze the stability of magnetic states obtained within the tight-binding model for cubooctahedr...
Using density functional theory we present a systematic study of the electronic and magnetic propert...
The knowledge of the atomic structure of clusters composed by few atoms is a basic prerequisite to o...
The research presented in this thesis describes the computational DFT study of homo and bimetallic P...
International audienceLigand stabilized clusters of palladium are treated at density functional theo...
International audienceNeutral, ligand-free Pdn clusters, n = 2–309, are investigated using density f...
The geometrical structure, atomic ordering, electronic and magnetic properties of closed shell Con P...
PACS. 36.40Cg – Electronic and magnetic properties of clusters. PACS. 75.40Mg – Numerical simulation...
We report a comparative study of the magnetic properties of free-standing PdN clusters (2 ≤ N ≤...
A systematic study of the colineal and no-colineal magnetic properties and the metallic behavior in ...
The current focus of material science researchers is on the magnetic behavior of transition metal cl...
Palladium nanostructures are widely used as catalyst of many organic reactions1 and present intrigui...
Here we report a systematic theoretical study of the equilibrium structures, electronic and magnetic...
In this paper, the structural, magnetic, and electronic properties of two- to nine-atom copper and s...
The influence of U doping on the structural, electronic and magnetic properties of Pdn c...
We analyze the stability of magnetic states obtained within the tight-binding model for cubooctahedr...
Using density functional theory we present a systematic study of the electronic and magnetic propert...
The knowledge of the atomic structure of clusters composed by few atoms is a basic prerequisite to o...
The research presented in this thesis describes the computational DFT study of homo and bimetallic P...
International audienceLigand stabilized clusters of palladium are treated at density functional theo...
International audienceNeutral, ligand-free Pdn clusters, n = 2–309, are investigated using density f...
The geometrical structure, atomic ordering, electronic and magnetic properties of closed shell Con P...
PACS. 36.40Cg – Electronic and magnetic properties of clusters. PACS. 75.40Mg – Numerical simulation...