Infinite basis limits in electronic structure theory
- 2 August 1999
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 111 (7) , 2921-2926
- https://doi.org/10.1063/1.479659
Abstract
We have developed a database of 29 molecules for which we have estimated the complete-one-electron-basis-set limit of the zero-point-exclusive atomization energy for five levels of electronic structure theory: Hartree–Fock (HF) theory, Mo/ller–Plesset second- and fourth-order perturbation theory, coupled cluster theory based on single and double excitations (CCSD), and CCSD plus a quasiperturbative treatment of triple excitations [CCSD(T)], all at a single set of standard geometries. Convergence checks indicate that the estimates are within a few tenths of a kcal/mol of the limit of the basis set sequence. This data is then used to obtain optimized power-law exponents for extrapolating to the basis-set-limit from correlation-consistent polarized valence double and triple zeta (cc-pVDZ and cc-pVTZ) basis sets. This allows one to get thermochemical accuracy comparable to polarized quadruple or quintuple zeta (cc-pVQZ or cc-pV5Z) basis sets with a cost very comparable to polarized triple zeta, which is one order of magnitude less expensive than polarized quadruple zeta and two orders of magnitude less expensive than polarized quintuple zeta.
Keywords
This publication has 20 references indexed in Scilit:
- A fifth-order perturbation comparison of electron correlation theoriesPublished by Elsevier ,2001
- Ab initio total atomization energies of small molecules — towards the basis set limitPublished by Elsevier ,1998
- Calibration Study of Atomization Energies of Small PolyatomicsPublished by American Chemical Society (ACS) ,1998
- Gaussian basis sets for use in correlated molecular calculations. VI. Sextuple zeta correlation consistent basis sets for boron through neonJournal of Molecular Structure: THEOCHEM, 1996
- Electron Correlation Effects in MoleculesThe Journal of Physical Chemistry, 1996
- Benchmark calculations with correlated molecular wave functions. I. Multireference configuration interaction calculations for the second row diatomic hydridesThe Journal of Chemical Physics, 1993
- Gaussian basis sets for use in correlated molecular calculations. III. The atoms aluminum through argonThe Journal of Chemical Physics, 1993
- Application of systematic sequences of wave functions to the water dimerThe Journal of Chemical Physics, 1992
- Gaussian basis sets for use in correlated molecular calculations. I. The atoms boron through neon and hydrogenThe Journal of Chemical Physics, 1989
- General contraction of Gaussian basis sets. I. Atomic natural orbitals for first- and second-row atomsThe Journal of Chemical Physics, 1987