Linear, Electron-Rich Erbium Single-Molecule Magnet with Dibenzocyclooctatetraene Ligands.

Inorg Chem

Department of Chemistry, Michigan State University, 578 South Shaw Lane, East Lansing, Michigan 48824, United States.

Published: May 2024

Judicious design of ligand scaffolds to highly anisotropic lanthanide ions led to substantial advances in molecular spintronics and single-molecule magnetism. Erbium-based single-molecule magnets (SMMs) are rare, which is attributed to the prolate-shaped Er ion requiring an equatorial ligand field for enhancing its single-ion magnetic anisotropy. Here, we present an electron-rich mononuclear Er SMM, [K(crypt-222)][Er(dbCOT)], (where dbCOT = dibenzocyclooctatetraene), that was obtained from a salt metathesis reaction of ErCl and KdbCOT. The dipotassium salt, KdbCOT, was generated through a two-electron reduction of the bare dbCOT ligand employing potassium graphite and was crystallized from DME to give the new solvated complex, [K(DME)][dbCOT], . was analyzed through crystallography, electrochemistry, spectroscopy, magnetometry, and CASSCF calculations. The structure of consists of an anionic metallocene complex featuring a linear (180.0°) geometry with an Er ion sandwiched between dianionic dbCOT ligands and an outer-sphere K ion encapsulated in 2.2.2-cryptand. Two pronounced redox events at negative potentials allude to the formation of a trianionic erbocene complex, [Er(dbCOT)], on the electrochemical time scale. shows slow magnetic relaxation with an effective spin-reversal barrier of = 114(2) cm, which is close in magnitude to the calculated energies of the first and second excited states of 96.9 and 109.13 cm, respectively. exhibits waist-constricted hysteresis loops below 4 K and constitutes the first example of an erbocene-SMM bearing fused aromatic rings to the central COT ligand. Notably, comprises the largest COT scaffold implemented in erbocene SMMs, yielding the most electron-rich homoleptic erbium metallocene SMM.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11134505PMC
http://dx.doi.org/10.1021/acs.inorgchem.4c00731DOI Listing

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