articleJournal of Chemical Theory and ComputationMay 8, 2008Closed access

All-Electron Scalar Relativistic Basis Sets for Third-Row Transition Metal Atoms

University of Wisconsin–Madison

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Abstract

A family of segmented all-electron relativistically contracted (SARC) basis sets for the elements Hf-Hg is constructed for use in conjunction with the Douglas-Kroll-Hess (DKH) and zeroth-order regular approximation (ZORA) scalar relativistic Hamiltonians. The SARC basis sets are loosely contracted and thus offer computational advantages compared to generally contracted relativistic basis sets, while their sufficiently small size allows them to be used in place of effective core potentials (ECPs) for routine studies of molecules. Practical assessments of the SARC basis sets in DFT calculations of atomic (ionization energies) as well as molecular properties (geometries and bond dissociation energies for MHn…

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Authors

4

Topics & keywords

Keywords
  • Relativistic quantum chemistry
  • Diatomic molecule
  • Scalar (mathematics)
  • Ionization
  • Electron
  • Basis (linear algebra)
  • Atomic physics
  • Core electron
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