Two new semiempirical methods employing a Pairwise Distance Directed Gaussian modification have been developed: PDDG/PM3 and PDDG/MNDO; they are easily implemented in existing software, and yield heats of formation for compounds containing C, H, N, and O atoms with significantly improved accuracy over the standard NDDO schemes, PM5, PM3, AM1, and MNDO. The PDDG/PM3 results for heats of formation also show substantial improvement over density functional theory with large basis sets. The PDDG modifications consist of a single function, which is added to the existing pairwise core repulsion functions within PM3 and MNDO, a reparameterized semiempirical parameter set, and modified computation of the energy of formation of a gaseous atom. The PD...
We develop and validate a density functional, XYG3, based on the adiabatic connection formalism and ...
The semiempirical orthogonalization-corrected OM<i>x</i> methods (OM1, OM2, and OM3) go beyond the s...
We present two new semiempirical quantum-chemical methods with orthogonalization and dispersion corr...
Deficiencies in energetics obtained using the common semiempirical methods, AM1, PM3, and MNDO, may ...
Heat of formation is one of several important parameters used to assess the performance of energetic...
The MNDO scheme has been reparametrized for hydrocarbons using both molecular binding energies and h...
We present new dispersion and hydrogen bond corrections to the PM6 method, PM6-D3H+, and its impleme...
Computational electronic structure calculations are routinely undertaken to predict thermodynamic pr...
The semiempirical orthogonalization-corrected OMx methods (OM1, OM2, and OM3) go beyond the standard...
Heats of formation, molecular geometries, ionization potentials, and dipole moments are calculated b...
The correct calculation of formation enthalpy is one of the enablers of ab-initio computational mate...
Computational electronic structure calculations are routinely undertaken to predict thermodynamic pr...
The semiempirical methods of quantum chemistry are reviewed, with emphasis on established neglect of...
Semiempirical quantum mechanical methods with corrections for noncovalent interactions, namely dispe...
The gas phase standard state (298.15 K, 1 atm) isomerization enthalpy prediction performance of the ...
We develop and validate a density functional, XYG3, based on the adiabatic connection formalism and ...
The semiempirical orthogonalization-corrected OM<i>x</i> methods (OM1, OM2, and OM3) go beyond the s...
We present two new semiempirical quantum-chemical methods with orthogonalization and dispersion corr...
Deficiencies in energetics obtained using the common semiempirical methods, AM1, PM3, and MNDO, may ...
Heat of formation is one of several important parameters used to assess the performance of energetic...
The MNDO scheme has been reparametrized for hydrocarbons using both molecular binding energies and h...
We present new dispersion and hydrogen bond corrections to the PM6 method, PM6-D3H+, and its impleme...
Computational electronic structure calculations are routinely undertaken to predict thermodynamic pr...
The semiempirical orthogonalization-corrected OMx methods (OM1, OM2, and OM3) go beyond the standard...
Heats of formation, molecular geometries, ionization potentials, and dipole moments are calculated b...
The correct calculation of formation enthalpy is one of the enablers of ab-initio computational mate...
Computational electronic structure calculations are routinely undertaken to predict thermodynamic pr...
The semiempirical methods of quantum chemistry are reviewed, with emphasis on established neglect of...
Semiempirical quantum mechanical methods with corrections for noncovalent interactions, namely dispe...
The gas phase standard state (298.15 K, 1 atm) isomerization enthalpy prediction performance of the ...
We develop and validate a density functional, XYG3, based on the adiabatic connection formalism and ...
The semiempirical orthogonalization-corrected OM<i>x</i> methods (OM1, OM2, and OM3) go beyond the s...
We present two new semiempirical quantum-chemical methods with orthogonalization and dispersion corr...