Accurate thermochemistry for larger molecules: Gaussian-2 theory with bond separation energies
Krishnan Raghavachari, Boris B. Stefanov, Larry A. Curtiss
Abstract
Krishnan Raghavachari, Boris B. Stefanov, Larry A. Curtiss
Abstract
Gaussian-2 (G2) theory is combined with isodesmic bond separation reaction energies to yield accurate thermochemistry for larger molecules. For a test set of 40 molecules composed of H, C, O, and N, our method yields enthalpies of formation, ΔHf0(298 K), with a mean absolute deviation from experiment of only 0.5 kcal/mol. This is an improvement of a factor of three over the deviation of 1.5 kcal/mol seen in standard G2 theory.
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Gaussian-2 (G2) theory is combined with isodesmic bond separation reaction energies to yield accurate thermochemistry for larger molecules. For a test set of 40 molecules composed of H, C, O, and N, our method yields enthalpies of formation, ΔHf0(298 K), with a mean absolute deviation from experiment of only 0.5 kcal/mol. This is an improvement of a factor of three over the deviation of 1.5 kcal/mol seen in standard G2 theory.
Key concepts: Isodesmic reaction, Thermochemistry, Standard enthalpy of formation, Molecule, Gaussian, Absolute deviation, Chemistry, Bond energy