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Get Free AccessThe magnetic properties of pseudotetrahedral Co(II) complexes spawned intense interest after (PPh4)2[Co(SPh)4] was shown to be the first mononuclear transition-metal complex displaying slow relaxation of the magnetization in the absence of a direct current magnetic field. However, there are differing reports on its fundamental magnetic spin Hamiltonian (SH) parameters, which arise from inherent experimental challenges in detecting large zero-field splittings. There are also remarkable changes in the SH parameters of [Co(SPh)4]2– upon structural variations, depending on the counterion and crystallization conditions. In this work, four complementary experimental techniques are utilized to unambiguously determine the SH parameters for two different salts of [Co(SPh)4]2–: (PPh4)2[Co(SPh)4] (1) and (NEt4)2[Co(SPh)4] (2). The characterization methods employed include multifield SQUID magnetometry, high-field/high-frequency electron paramagnetic resonance (HF-EPR), variable-field variable-temperature magnetic circular dichroism (VTVH-MCD), and frequency domain Fourier transform THz-EPR (FD-FT THz-EPR). Notably, the paramagnetic Co(II) complex [Co(SPh)4]2– shows strong axial magnetic anisotropy in 1, with D = −55(1) cm–1 and E/D = 0.00(3), but rhombic anisotropy is seen for 2, with D = +11(1) cm–1 and E/D = 0.18(3). Multireference ab initio CASSCF/NEVPT2 calculations enable interpretation of the remarkable variation of D and its dependence on the electronic structure and geometry.
Elizaveta A. Suturina, Joscha Nehrkorn, Joseph M. Zadrozny, Junjie Liu, Mihail Atanasov, Thomas Weyhermüller, Dimitrios Maganas, Stephen Hill, Alexander Schnegg, Eckhard Bill, Jeffrey R. Long, Frank Neese (2017). Magneto-Structural Correlations in Pseudotetrahedral Forms of the [Co(SPh)<sub>4</sub>]<sup>2–</sup> Complex Probed by Magnetometry, MCD Spectroscopy, Advanced EPR Techniques, and ab Initio Electronic Structure Calculations. Inorganic Chemistry, 56(5), pp. 3102-3118, DOI: 10.1021/acs.inorgchem.7b00097.
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Type
Article
Year
2017
Authors
12
Datasets
0
Total Files
0
Language
English
Journal
Inorganic Chemistry
DOI
10.1021/acs.inorgchem.7b00097
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