Single-Ion Magnet Et4N[CoII(hfac)3] with Nonuniaxial Anisotropy: Synthesis, Experimental Characterization, and Theoretical Modeling
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PALII, Andrew, KORCHAGIN, Denis, YURIEVA, Elena, AKIMOV, Alexander, MISOCHKO, Eugenii, SHILOV, Gennadii, TALANTSEV , Artem, MORGUNOV, Roman, ALDOSHIN, Serghei, TSUKERBLAT, Boris S.. Single-Ion Magnet Et4N[CoII(hfac)3] with Nonuniaxial Anisotropy: Synthesis, Experimental Characterization, and Theoretical Modeling. In: Inorganic Chemistry, 2016, vol. 55, pp. 9696-9706. ISSN 0020-1669. DOI: https://doi.org/10.1021/acs.inorgchem.6b01473
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Inorganic Chemistry
Volumul 55 / 2016 / ISSN 0020-1669

Single-Ion Magnet Et4N[CoII(hfac)3] with Nonuniaxial Anisotropy: Synthesis, Experimental Characterization, and Theoretical Modeling

DOI:https://doi.org/10.1021/acs.inorgchem.6b01473

Pag. 9696-9706

Palii Andrew12, Korchagin Denis1, Yurieva Elena1, Akimov Alexander1, Misochko Eugenii1, Shilov Gennadii1, Talantsev Artem1, Morgunov Roman1, Aldoshin Serghei1, Tsukerblat Boris S.3
 
1 Institute of Problems of Chemical Physics, Chernogolovka, Moscow Region,
2 Institute of Applied Physics, Academy of Sciences of Moldova,
3 Ben-Gurion University of the Negev
 
 
Disponibil în IBN: 17 decembrie 2022


Rezumat

In this article we report the synthesis and structure of the new Co(II) complex Et4N[CoII(hfac)3] (I) (hfac = hexafluoroacetylacetonate) exhibiting single-ion magnet (SIM) behavior. The performed analysis of the magnetic characteristics based on the complementary experimental techniques such as static and dynamic magnetic measurements, electron paramagnetic resonance spectroscopy in conjunction with the theoretical modeling (parametric Hamiltonian and ab initio calculations) demonstrates that the SIM properties of I arise from the nonuniaxial magnetic anisotropy with strong positive axial and significant rhombic contributions.

Cuvinte-cheie
Magnetic Relaxation, Splitting Field, complex