Standard approximations to the density functional theory exchange-correlation functional have been extraordinary successful, but calculating formation enthalpies of reactions involving compounds with both localized and delocalized electronic states remains challenging. In this work we examine the shortcomings of the generalized gradient approximation (GGA) and GGA+U in accurately characterizing such difficult reactions. We then outline a methodology that mixes GGA and GGA+U total energies (using known binary formation data for calibration) to more accurately predict formation enthalpies. We demonstrate that for a test set of 49 ternary oxides, our methodology can reduce the mean absolute relative error in calculated formation enthalpies fro...
In this work, we demonstrate a method to quantify uncertainty in corrections to density functional t...
A complete and consistent set of 60 Benson group additive values (GAVs) for oxygenate molecules and ...
Heat of formation is one of several important parameters used to assess the performance of energetic...
Standard approximations to the density functional theory exchange-correlation functional have been e...
The evaluation of reaction energies between solids using density functional theory (DFT) is of pract...
The correct calculation of formation enthalpy is one of the enablers of ab-initio computational mate...
Computational materials discovery efforts are enabled by large databases of properties derived from ...
Accurate gas phase formation enthalpies, ÎHf, of metal oxides and halides are critical for the predi...
Density functional theory calculations can be used to gain valuable insight into the fundamental rea...
Computing the enthalpies of formation for alkali metal and alkaline earth metal oxides (MxO) and hyd...
Abstract: In the assessment of density functional approximations for the exchange-correlation energy...
A simple atom equivalent method for converting density functional theory (DFT) energies to enthalpie...
International audienceNowadays first-principles calculations have achieved considerable reliability ...
Semilocal density-functional theory (DFT) methods exhibit significant errors for the phase diagrams ...
Extrapolation formulas based on power and exponential formulas, as well as alternatives from a Taylo...
In this work, we demonstrate a method to quantify uncertainty in corrections to density functional t...
A complete and consistent set of 60 Benson group additive values (GAVs) for oxygenate molecules and ...
Heat of formation is one of several important parameters used to assess the performance of energetic...
Standard approximations to the density functional theory exchange-correlation functional have been e...
The evaluation of reaction energies between solids using density functional theory (DFT) is of pract...
The correct calculation of formation enthalpy is one of the enablers of ab-initio computational mate...
Computational materials discovery efforts are enabled by large databases of properties derived from ...
Accurate gas phase formation enthalpies, ÎHf, of metal oxides and halides are critical for the predi...
Density functional theory calculations can be used to gain valuable insight into the fundamental rea...
Computing the enthalpies of formation for alkali metal and alkaline earth metal oxides (MxO) and hyd...
Abstract: In the assessment of density functional approximations for the exchange-correlation energy...
A simple atom equivalent method for converting density functional theory (DFT) energies to enthalpie...
International audienceNowadays first-principles calculations have achieved considerable reliability ...
Semilocal density-functional theory (DFT) methods exhibit significant errors for the phase diagrams ...
Extrapolation formulas based on power and exponential formulas, as well as alternatives from a Taylo...
In this work, we demonstrate a method to quantify uncertainty in corrections to density functional t...
A complete and consistent set of 60 Benson group additive values (GAVs) for oxygenate molecules and ...
Heat of formation is one of several important parameters used to assess the performance of energetic...