Density functionals are often used in ab initio thermochemistry to provide optimized geometries for single-point evaluations at a high level and to supply estimates of anharmonic zero-point energies (ZPEs). Their use is motivated by relatively high accuracy at a modest computational expense, but a thorough assessment of geometry-related error seems to be lacking. We have benchmarked 53 density functionals, focusing on approximations of the first four rungs and on relatively small basis sets for computational efficiency. Optimized geometries of 279 neutral first-row molecules (H, C, N, O, F) are judged by energy penalties relative to the best available geometries, using the composite model ATOMIC/B 5 as energy probe. Only hybrid functionals ...
Using multiwavelets, we have obtained total energies and corresponding atomization energies for the ...
In this Letter we report the error analysis of 59 exchange-correlation functionals in evaluating the...
Although density functional theory is widely used in the computational chemistry community, the most...
textThis work focuses on an examination of the high-accuracy extrapoloated ab initio thermochemistry...
textThis work focuses on an examination of the high-accuracy extrapoloated ab initio thermochemistry...
We present a number of near-exact, nonrelativistic, Born-Oppenheimer reference data sets for the par...
By judicious use of extrapolations to the 1-particle basis set limit and $n$-particle calibration te...
Using multiwavelets, we have obtained total energies and corresponding atomization energies for the ...
Recently developed density functionals have good accuracy for both thermochemistry (TC) and non-cova...
We develop and validate a density functional, XYG3, based on the adiabatic connection formalism and ...
The correct calculation of formation enthalpy is one of the enablers of ab-initio computational mate...
We investigate the relationships between electron-density and electronic-energy errors produced by m...
The validity of hybrid and nonlocal DFT methods are tested on examples of systems which are difficul...
Sun et al. [J. Chem. Phys. 144, 191101 (2016)] suggested that common density functional approximatio...
Using multiwavelets, we have obtained total energies and corresponding atomization energies for the ...
Using multiwavelets, we have obtained total energies and corresponding atomization energies for the ...
In this Letter we report the error analysis of 59 exchange-correlation functionals in evaluating the...
Although density functional theory is widely used in the computational chemistry community, the most...
textThis work focuses on an examination of the high-accuracy extrapoloated ab initio thermochemistry...
textThis work focuses on an examination of the high-accuracy extrapoloated ab initio thermochemistry...
We present a number of near-exact, nonrelativistic, Born-Oppenheimer reference data sets for the par...
By judicious use of extrapolations to the 1-particle basis set limit and $n$-particle calibration te...
Using multiwavelets, we have obtained total energies and corresponding atomization energies for the ...
Recently developed density functionals have good accuracy for both thermochemistry (TC) and non-cova...
We develop and validate a density functional, XYG3, based on the adiabatic connection formalism and ...
The correct calculation of formation enthalpy is one of the enablers of ab-initio computational mate...
We investigate the relationships between electron-density and electronic-energy errors produced by m...
The validity of hybrid and nonlocal DFT methods are tested on examples of systems which are difficul...
Sun et al. [J. Chem. Phys. 144, 191101 (2016)] suggested that common density functional approximatio...
Using multiwavelets, we have obtained total energies and corresponding atomization energies for the ...
Using multiwavelets, we have obtained total energies and corresponding atomization energies for the ...
In this Letter we report the error analysis of 59 exchange-correlation functionals in evaluating the...
Although density functional theory is widely used in the computational chemistry community, the most...