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Understanding the fate of electronically excited states by quantum chemical calculations
(Prague, Czech Republic : J. Heyrovský Institute of Physical Chemistry CAS, 2023)
The electronically excited states of transition metal complexes are classified into inter-configurational and intra-configurational metal-centered, ligand-centered, and charge transfer
states. Different (de)localization ...
Rational design of single molecule magnets
(World Association of Theoretical and Computational Chemists, 2017)
In this work, computational study of the magnetic anisotropy in series of transition metal complexes when changing the metal ion or the ligands in a controlled way will be presented. In order to achieve this goal, first, ...
The role of DFT in characterization of coordination compounds: opportunities and challenges
(Viena, Austria : Institute of Applied Synthetic Chemistry, TU WienChemIT e.U., 2023)
In the last two decades, considerable theoretical efforts have been made to develop suitable methods for predicting and rationalizing the complicated electronic structure of TM compounds. However, the matter remains open ...
A Glimpse into the Ligand Field Theory from Density Functional Perspective
(Univ. Nova de LisboaCOST Action CM1305, 2017)
Electronic structure of transition metal complexes are commonly rationalized within the Ligand Field Theory (LFT). In LFT the Hamiltonian is parameterized in terms of one-electron (LF) parameters and two-electron repulsion ...
Spin states of Mn(II) and Fe(III) complexes with thiosemicarbazone
(Viena, Austria : Institute of Applied Synthetic Chemistry, TU WienChemIT e.U., 2023)
Mn(II) and Fe(III) complexes with condensation product of thiosemicarbazide and 2-acetylthiazole have been synthesized and characterized by single-crystal X-ray diffraction. Two complexes have the same ligand system – bis ...