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  <rdfs:comment>BibSonomy publications for/author/Calcinari</rdfs:comment>
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  <rdf:Description rdf:about="http://www.bibsonomy.org/bibtex/275956e7cdb1c349b5ec3d11010fbee99/hlwoodcock">
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    <swrc:journal>JOURNAL OF PHYSICAL CHEMISTRY A</swrc:journal><swrc:number>35</swrc:number><swrc:pages>6310--6314</swrc:pages><swrc:title>Comparison between CASPT2 and DFT in the study of Ni(C2H4)(2) complexes</swrc:title><swrc:volume>101</swrc:volume><swrc:year>1997</swrc:year><swrc:keywords>bibtex-import </swrc:keywords><swrc:date>2006-06-16 05:03:46.0</swrc:date><swrc:abstract>In this paper we report the results of a comparative theoretical study at the CASSCF/CASPT2 and DFT levels of the potential energy surface associated with bis(ethylene)-nickel complexes. The computations predict the existence on the potential surface of only one minimum of D-2d symmetry: the other critical points located on the surface (corresponding to structures of C-2v and D-2d symmetries) are saddle points of higher order. The results have pointed out that (i) the inclusion of dynamic correlation does not change the topology of the surface; (ii) the DFT approach provides for these systems results very similar to those obtained at the CASSCF/CASPT2 level; (iii) an effective core potential (ECP) basis (LANL2DZ) can provide a reliable description for these metal-olefin clusters. The second and third points are of particular interest since they indicate that it is possible to use a cheap approach (DFT with an ECP basis) to investigate larger nickel-olefin clusters with bulky ligands on the metal atom, as those involved in catalyzed cycloaddition reactions.</swrc:abstract><swrc:hasExtraField>
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  <rdf:_1><swrc:Person swrc:name="F. Bernardi" /></rdf:_1>
  <rdf:_2><swrc:Person swrc:name="A. Bottoni" /></rdf:_2>
  <rdf:_3><swrc:Person swrc:name="M. Calcinari" /></rdf:_3>
  <rdf:_4><swrc:Person swrc:name="I. Rossi" /></rdf:_4>
  <rdf:_5><swrc:Person swrc:name="M. A. Robb" /></rdf:_5>
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