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Accurate Coulomb-fitting basis sets for H to Rn

Florian Weigend · Physical Chemistry Chemical Physics · 2006

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A series of auxiliary basis sets to fit Coulomb potentials for the elements H to Rn (except lanthanides) is presented. For each element only one auxiliary basis set is needed to approximate Coulomb energies in conjunction with orbital basis sets of split valence, triple zeta valence and quadruple zeta valence quality with errors of typically below ca. 0.15 kJ mol(-1) per atom; this was demonstrated in conjunction with the recently developed orbital basis sets of types def2-SV(P), def2-TZVP and def2-QZVPP for a large set of small molecules representing (nearly) each element in all of its common oxidation states. These auxiliary bases are slightly more than three times larger than orbital bases of split valence quality. Compared to non-approximated treatments, computation times for the Coulomb part are reduced by a factor of ca. 8 for def2-SV(P) orbital bases, ca. 25 for def2-TZVP and ca. 100 for def2-QZVPP orbital bases.

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APA 7

Weigend, F. (2006). Accurate Coulomb-fitting basis sets for H to Rn. https://doi.org/10.1039/b515623h

MLA

Weigend, Florian. "Accurate Coulomb-fitting basis sets for H to Rn." 2006. https://doi.org/10.1039/b515623h.

Chicago

Weigend, Florian. 2006. "Accurate Coulomb-fitting basis sets for H to Rn.". https://doi.org/10.1039/b515623h.

Harvard

Weigend, F. 2006, Accurate Coulomb-fitting basis sets for H to Rn, Physical Chemistry Chemical Physics, available at: https://doi.org/10.1039/b515623h [Accessed 10 Aug. 2026].

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Title
Accurate Coulomb-fitting basis sets for H to Rn
Author / contributors
Florian Weigend
Publisher
Physical Chemistry Chemical Physics
Publication year
2006
Language
English

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