The atomization energies of selected alkanes, alkyl radicals, and amines are deduced from Xα local spin density calculations of E, the total energy of a molecule in its potential minimum. Both the exchange-correlation energy, , and itself obey, in a first approximation, simple atom-by-atom additivity rules. The appropriate α's for use in Xα(LSD) calculations of organic molecules thus appear as weighted averages and depend on the particular composition of each molecule. The at least approximate validity of this averaging procedure is illustrated by the accuracy of calculated atomization energies
We introduce a machine learning model to predict atomization energies of a diverse set of organic mo...
The modified Sanderson formalism for calculation of atomic charge in organic molecules has been show...
The accurate and reliable prediction of properties of molecules typically requires computationally i...
The atomization energies of selected alkanes, alkyl radicals, and amines are deduced from Xα local s...
The errors in atomization energies (AE) of molecules have long been used to measure the errors of wa...
We present estimates of the exact correlation energies for 56 small molecules whose experimental ato...
We assess various approximate forms for the correlation energy per particle of the spin-polarized ho...
While most molecules and solids are spin-unpolarized, most chemically-active atoms are partly spin-p...
Abstract: In the assessment of density functional approximations for the exchange-correlation energy...
The generalized gradient approximation (GGA) corrects many of the shortcomings of the local spin-den...
A simplified method for molecular correlation energy calculations has been recently proposed (ref. 1...
The leading cause of error in standard coupled cluster theory calculations of thermodynamic properti...
Based on the Aλ diagnostic for multireference effects recently proposed [U.R. Fogueri, S. Kozuch, A....
Generalized gradient approximations (GGA’s) seek to improve upon the accuracy of the local-spin-dens...
The relation of Kohn-Sham (KS) orbital energies to ionization energies and electron affinities is di...
We introduce a machine learning model to predict atomization energies of a diverse set of organic mo...
The modified Sanderson formalism for calculation of atomic charge in organic molecules has been show...
The accurate and reliable prediction of properties of molecules typically requires computationally i...
The atomization energies of selected alkanes, alkyl radicals, and amines are deduced from Xα local s...
The errors in atomization energies (AE) of molecules have long been used to measure the errors of wa...
We present estimates of the exact correlation energies for 56 small molecules whose experimental ato...
We assess various approximate forms for the correlation energy per particle of the spin-polarized ho...
While most molecules and solids are spin-unpolarized, most chemically-active atoms are partly spin-p...
Abstract: In the assessment of density functional approximations for the exchange-correlation energy...
The generalized gradient approximation (GGA) corrects many of the shortcomings of the local spin-den...
A simplified method for molecular correlation energy calculations has been recently proposed (ref. 1...
The leading cause of error in standard coupled cluster theory calculations of thermodynamic properti...
Based on the Aλ diagnostic for multireference effects recently proposed [U.R. Fogueri, S. Kozuch, A....
Generalized gradient approximations (GGA’s) seek to improve upon the accuracy of the local-spin-dens...
The relation of Kohn-Sham (KS) orbital energies to ionization energies and electron affinities is di...
We introduce a machine learning model to predict atomization energies of a diverse set of organic mo...
The modified Sanderson formalism for calculation of atomic charge in organic molecules has been show...
The accurate and reliable prediction of properties of molecules typically requires computationally i...