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Energy-adjusted <i>a</i> <i>b</i> <i>i</i> <i>n</i> <i>i</i> <i>t</i> <i>i</i> <i>o</i> pseudopotentials for the first row transition elements
The Journal of Chemical Physics · 1987 · Vol. 86(2) · pp. 866–872
Michael Dolg✉(University of Stuttgart)Ulrich Wedig(University of Stuttgart)Hermann Stoll(University of Stuttgart)H. Preuß(University of Stuttgart)
Abstract
Nonrelativistic and quasirelativistic ab-initio pseudopotentials representing the Ne-like X(Z−10)+ cores (X=Sc–Zn) of the first row transition metals and optimized (8s7p6d1f )/[6s5p3d1f ]-GTO valence basis sets for use in molecular calculations have been generated. Excitation and ionization energies of the low lying states of Sc through Zn from numerical HF- as well as SCF- and CI(SD)-pseudopotential calculations using the derived basis sets differ by less than 0.1 eV from corresponding all-electron results.
Advanced Chemical Physics StudiesAtomic and Molecular PhysicsInorganic Fluorides and Related CompoundsPseudopotentialAtomic physicsExcitationValence (chemistry)Ab initioIonizationChemistryAb initio quantum chemistry methodsBasis setIonization energy
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References
<i>Ab initio</i> effective core potentials for molecular calculations. Potentials for the transition metal atoms Sc to Hg
The Journal of Chemical Physics · 1985 · 13,562 citations
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