Strong magnetic exchange coupling in Ln2 metallocenes attained by the trans-coordination of a tetrazinyl radical ligand
Abstract
A combination of high-performing lanthanide metallocenes and tetrazine-based radical ligands leads to a new series of radical-bridged dinuclear lanthanide metallocenes; [(Cp*2LnIII)2(bpytz˙−)][BPh4] (where Ln = Gd (1), Tb (2), Dy (3) and Y (4); Cp* = pentamethylcyclopentadienyl; bpytz = 3,6-bis(3,5-dimethyl-pyrazolyl)-1,2,4,5-tetrazine). The formation of the radical species is achieved via a controlled, stepwise synthesis and verified in all complexes by X-ray crystallography and SQUID magnetometry, as well as EPR spectroscopy of 4. Through the judicious choice of the Cp* ancillary ligands and by taking advantage of the steric effects imposed by their bulkiness, we were able to promote the trans coordination mode of the bpytz˙− radical anion that enables stronger magnetic exchange coupling compared to the cis fashion. This yields a JGd–rad = −14.0 cm−1 in 1, which is the strongest exchange coupling observed in organic monoanionic radical-bridged lanthanide metallocene systems. The strong Ln-rad exchange coupling was further confirmed by high-frequency EPR (HF-EPR) spectroscopy and broken-symmetry (BS) density functional theory (DFT) calculations. This combined with the highly anisotropic nature of TbIII and DyIII ions in 2 and 3, respectively, leads to strong SMM behavior and slow relaxation of the magnetization at zero fields.
Main Authors
Format
Articles
Research article
Published
2023
Series
Subjects
Publication in research information system
Publisher
Royal Society of Chemistry (RSC)
The permanent address of the publication
https://urn.fi/URN:NBN:fi:jyu-202312148322Käytä tätä linkitykseen.
Review status
Peer reviewed
ISSN
2052-1545
DOI
https://doi.org/10.1039/d3qi00290j
Language
English
Published in
Inorganic Chemistry Frontiers
Citation
- Mavragani, N., Kitos, A. A., Hrubý, J., Hill, S., Mansikkamäki, A., Moilanen, J. O., & Murugesu, M. (2023). Strong magnetic exchange coupling in Ln2 metallocenes attained by the trans-coordination of a tetrazinyl radical ligand. Inorganic Chemistry Frontiers, 10(14), 4197-4208. https://doi.org/10.1039/d3qi00290j
Funder(s)
Research Council of Finland
Research Council of Finland
Funding program(s)
Research costs of Academy Research Fellow, AoF
Academy Research Fellow, AoF
Akatemiatutkijan tutkimuskulut, SA
Akatemiatutkija, SA
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Additional information about funding
N. M., A. A. K. and M. M. thank the University of Ottawa, the Canada Foundation for Innovation (CFI) and the Natural Sciences and Engineering Research Council of Canada (NSERC) for the financial support of this work. N. M. acknowledges the University of Ottawa and the Stavros Niarchos Foundation for financial support through scholarships. J. H. and S. H. acknowledge support from the US Department of Energy, Basic Energy Sciences (DE-SC0020260). Work performed at the National High Magnetic Field Laboratory is supported by the US National Science Foundation (DMR-1644779) and the State of Florida. A. M. acknowledges funding provided by the Academy of Finland (grant no. 332294) and the University of Oulu (Kvantum Institute). J. O. M. acknowledges the Academy of Finland (projects 315829 and 345484) for the financial support, and the CSC-IT Centre for Science in Finland, the Finnish Grid and Cloud Infrastructure (persistent identifier urn:nbn:fi:research-infras-2016072533) and Prof. H. M. Tuononen (University of Jyväskylä) for providing computational resources for the project.
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