International audienceEven though recent developments in electronic structure calculations based on density functional theory (DFT) allow us to use them for more and more realistic systems, they still remain unsuited for comprehensive studies of complex transition metal compounds involving intricate structural and chemical effects. In that case, the tight-binding approximation (TBA) is a good compromise to get reliable results with only a minimal set of parameters, provided that clear rules enable a proper self-consistent treatment of charge transfers between inequivalent sites. Thus, in the case of the Co-Au system, DFT calculations demonstrate that a local neutrality rule is obeyed per orbital and per chemical species. Shifting the atomic...
We apply first-principles approaches with Hubbard U corrections for calculation of small molecule bi...
Recently developed parameters for five first-row transition-metal elements (M = Sc, Ti, Fe, Co, and ...
Metal complexes are ubiquitous for their diverse applications including catalysis, sensing, medicine...
We present a rigorous bottom-up approach for the derivation of the electronic structure part of tigh...
We present a rigorous bottom-up approach for the derivation of the electronic structure part of tigh...
An accurate description of the local electronic structure is necessary for guiding the design of mat...
International audienceAn accurate description of the local electronic structure is necessary for gui...
International audienceAn accurate description of the local electronic structure is necessary for gui...
International audienceAn accurate description of the local electronic structure is necessary for gui...
Tight-binding or linear combination of atomic orbitals is a method for computing the electronic stru...
Transition metals are ever-present as reactive centers in biological and inorganic catalyticcycles.H...
Current research challenges in areas such as energy and bioscience have created a strong need for De...
A systematic method for building an extensible tight-binding model from ab initio calculations has b...
To improve the description of interactions among the localized d, f electrons in transition metals, ...
We apply first-principles approaches with Hubbard U corrections for calculation of small molecule bi...
We apply first-principles approaches with Hubbard U corrections for calculation of small molecule bi...
Recently developed parameters for five first-row transition-metal elements (M = Sc, Ti, Fe, Co, and ...
Metal complexes are ubiquitous for their diverse applications including catalysis, sensing, medicine...
We present a rigorous bottom-up approach for the derivation of the electronic structure part of tigh...
We present a rigorous bottom-up approach for the derivation of the electronic structure part of tigh...
An accurate description of the local electronic structure is necessary for guiding the design of mat...
International audienceAn accurate description of the local electronic structure is necessary for gui...
International audienceAn accurate description of the local electronic structure is necessary for gui...
International audienceAn accurate description of the local electronic structure is necessary for gui...
Tight-binding or linear combination of atomic orbitals is a method for computing the electronic stru...
Transition metals are ever-present as reactive centers in biological and inorganic catalyticcycles.H...
Current research challenges in areas such as energy and bioscience have created a strong need for De...
A systematic method for building an extensible tight-binding model from ab initio calculations has b...
To improve the description of interactions among the localized d, f electrons in transition metals, ...
We apply first-principles approaches with Hubbard U corrections for calculation of small molecule bi...
We apply first-principles approaches with Hubbard U corrections for calculation of small molecule bi...
Recently developed parameters for five first-row transition-metal elements (M = Sc, Ti, Fe, Co, and ...
Metal complexes are ubiquitous for their diverse applications including catalysis, sensing, medicine...