Approximate functionals used in practical density functional theory (DFT) deviate from the piecewise linear behavior of the exact functional for fractional charges. This deviation causes excess charge delocalization, which leads to incorrect densities, molecular properties, barrier heights, band gaps, and excitation energies. We present a simple delocalization function for characterizing this error and find it to be almost perfectly linear vs the fractional electron number for systems spanning in size from the H atom to the C12H14 polyene. This causes the delocalization energy error to be a quadratic polynomial in the fractional electron number, which permits us to assess the comparative performance of 47 popular and recent functionals thro...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
ABSTRACT: Plots of electronic energy vs electron number, determined using approximate density functi...
International audienceWe study static correlation and delocalisation errors and show that even metho...
Approximate functionals used in practical density functional theory (DFT) deviate from the piecewise...
Approximate functionals used in practical density functional theory (DFT) deviate from the piecewise...
Density functional theory of electronic structure is widely and successfully applied in simulations ...
<p>Density functional theory is a formally exact theory to describe ground state properties due to t...
International audienceWe study static correlation and delocalisation errors and show that even metho...
We show that the exact universal functional can be accurately approximated as a sum of local parts F...
Delocalization error is one of the most fundamental and dominant errors that plagues presently used ...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
We study static correlation and delocalisation errors and show that even methods with good energies ...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
We decompose the energy error of any variational density functional theory calculation into a contri...
Partition Density Functional Theory (P-DFT) is a density embedding method that partitions a molecule...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
ABSTRACT: Plots of electronic energy vs electron number, determined using approximate density functi...
International audienceWe study static correlation and delocalisation errors and show that even metho...
Approximate functionals used in practical density functional theory (DFT) deviate from the piecewise...
Approximate functionals used in practical density functional theory (DFT) deviate from the piecewise...
Density functional theory of electronic structure is widely and successfully applied in simulations ...
<p>Density functional theory is a formally exact theory to describe ground state properties due to t...
International audienceWe study static correlation and delocalisation errors and show that even metho...
We show that the exact universal functional can be accurately approximated as a sum of local parts F...
Delocalization error is one of the most fundamental and dominant errors that plagues presently used ...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
We study static correlation and delocalisation errors and show that even methods with good energies ...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
We decompose the energy error of any variational density functional theory calculation into a contri...
Partition Density Functional Theory (P-DFT) is a density embedding method that partitions a molecule...
It has previously been shown that self-consistent-charge density-functional tight-binding (SCC-DFTB)...
ABSTRACT: Plots of electronic energy vs electron number, determined using approximate density functi...
International audienceWe study static correlation and delocalisation errors and show that even metho...