Tesis doctoralsDepartament de Química

Estudi de l'acoblament magnètic en complexos heterometàl·lics amb lligands pont oxamido, oxamato, tiooxalato i anàlegs

  • Identification data

    Identifier:  TDX:884
    Authors:  Queralt Rosinach, Núria
    Abstract:
    This theoretical work examines the magnetic coupling in bi- and trinuclear heterometallic transition metal complexes with bridging ligands such as oxamido, oxamato, ditiooxalato and analogues. To calculate their electronic structure multireference methods have been used, including different variants of DDCI method, developed in our group, and CASPT2 method. For different Cu(II)-Mn(II) binuclear known systems, the magnetic couplings and spin density maps calculated accurately reproduce the experimental data. The antiferromagnetic coupling in these compounds depends on the charge transfer from ligand to metal, linked to the electronegativity of coordinated atoms. In the hypothetical systems of type Cu(II)-M(II)-Cu(II), where M = Sc, Ti, V, Cr, Mn, Fe, Co, Ni, Cu and Zn, the magnitude of the estimated coupling depends on the electronegativity of the metal core, going from the weakly ferromagnetic for Sc to moderately antiferromagnetic for Cu. This work provides the microscopic interpretation of the coupling in these systems, as well as the validation and/or limitations of the computational methods used.
  • Others:

    Publisher: Universitat Rovira i Virgili
    Date: 2010-05-19
    Identifier: http://hdl.handle.net/10803/9106, http://www.tdx.cat/TDX-0909110-141231, 9788469354254, T-1416-2010
    Departament/Institute: Departament de Química Física i Inorgànica, Universitat Rovira i Virgili.
    Language: cat
    Author: Queralt Rosinach, Núria
    Director: Graaf, Coen de, Caballol Lorenzo, Rosa
    Source: TDX (Tesis Doctorals en Xarxa)
    Format: application/pdf
  • Keywords:

    Magnetisme molecular
    Química Quàntica
    heterometàl·lics
    binuclear
    trinuclear
    Mn(II)Cu(II)
    metalls de transició
    acoblament magnètic
    densitat de spin
    correlació dinàmica
    DDCI
    CASPT2
    CASSCF
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