While density functional theory (DFT) is widely applied for its combination of cost and accuracy, corrections (e.g., DFT+U) that improve it are often needed to tackle correlated transition-metal chemistry. In principle, the functional form of DFT+U, consisting of a set of localized atomic orbitals (AO) and a quadratic energy penalty for deviation from integer occupations of those AOs, enables the recovery of the exact conditions of piecewise linearity and the derivative discontinuity. Nevertheless, for practical transition-metal complexes, where both atomic states and ligand orbitals participate in bonding, standard DFT+U can fail to eliminate delocalization error (DE). Here, we show that by introducing an alternative valence-state (i.e., m...
The combination of density functional theory with dynamical mean-field theory (DFT+DMFT) has become ...
We present a formulation and implementation of the DFT+\textit{U} method within the framework of lin...
Recently developed density functionals have good accuracy for both thermochemistry (TC) and non-cova...
Low-cost, non-empirical corrections to semi-local density functional theory are essential for accur...
Low-cost, non-empirical corrections to semi-local density functional theory are essential for accura...
Approximate density functional theory (DFT) suffers from many-electron self-interaction error, other...
Approximate density functional theory (DFT) is widely used in chemistry and physics, despite delocal...
Transition metals are ever-present as reactive centers in biological and inorganic catalyticcycles.H...
Many people in the materials science and solid-state community are familiar with the acronym “DFT+U....
Approximate density functional theory (DFT) is widely used in chemistry and physics, despite delocal...
Since its inception, the widespread use of density functional theory (DFT) as a cost-effective tool ...
Transition-metal centers are the active sites for a broad variety of biological and inorganic chemic...
Piecewise linearity of the energy with respect to fractional electron removal or addition is a requi...
Electronic structure of transition metal complexes are commonly rationalized within the Ligand Field...
This electronic version was submitted by the student author. The certified thesis is available in t...
The combination of density functional theory with dynamical mean-field theory (DFT+DMFT) has become ...
We present a formulation and implementation of the DFT+\textit{U} method within the framework of lin...
Recently developed density functionals have good accuracy for both thermochemistry (TC) and non-cova...
Low-cost, non-empirical corrections to semi-local density functional theory are essential for accur...
Low-cost, non-empirical corrections to semi-local density functional theory are essential for accura...
Approximate density functional theory (DFT) suffers from many-electron self-interaction error, other...
Approximate density functional theory (DFT) is widely used in chemistry and physics, despite delocal...
Transition metals are ever-present as reactive centers in biological and inorganic catalyticcycles.H...
Many people in the materials science and solid-state community are familiar with the acronym “DFT+U....
Approximate density functional theory (DFT) is widely used in chemistry and physics, despite delocal...
Since its inception, the widespread use of density functional theory (DFT) as a cost-effective tool ...
Transition-metal centers are the active sites for a broad variety of biological and inorganic chemic...
Piecewise linearity of the energy with respect to fractional electron removal or addition is a requi...
Electronic structure of transition metal complexes are commonly rationalized within the Ligand Field...
This electronic version was submitted by the student author. The certified thesis is available in t...
The combination of density functional theory with dynamical mean-field theory (DFT+DMFT) has become ...
We present a formulation and implementation of the DFT+\textit{U} method within the framework of lin...
Recently developed density functionals have good accuracy for both thermochemistry (TC) and non-cova...