Oxidation State Effects on Decoherence in Isovalent 4f7 Complexes

Abstract The results of pulsed EPR measurements at W-band (94 GHz) on a series of isovalent 4f7 ions (Eu2+, Gd3+, Tb4+) are presented, constituting the first example to date of pulsed EPR on molecular Tb4+. An inverse correlation is found between the 5 K phase memory relaxation times (Tm) and the degree of zero-field splitting (ZFS) in these complexes. This observation reveals the role of ZFS as an effective reporter not only of structural distortions away from ideal cubic symmetry, but also of the overall electronic structure changes wrought by chemical oxidation, which undermine the seemingly advantageous increases in excited state energies and metal–ligand covalency across the series. Building upon previous studies of the physical properties of high oxidation state lanthanide complexes, these results further highlight the necessity for detailed electronic structure–property relationship studies to fully map the electronic consequences of chemical oxidation in the lanthanides.

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Publication Details

Journal
Inorganic Chemistry
Published
2026-10-08
DOI
https://doi.org/10.1021/acs.inorgchem.6c04187
Primary Topic
Magnetism in coordination complexes
Type
article
Field-Weighted Citation Impact
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article

Oxidation State Effects on Decoherence in Isovalent 4f7 Complexes

Kavipriya Thangavel, Manoj Vinayaka Hanabe Subramanya, Henry S. La Pierre, Grant R. Wilkinson et al.
Inorganic Chemistry
Magnetism in coordination complexes
article

Oxidation State Effects on Decoherence in Isovalent 4f7 Complexes

Kavipriya Thangavel, Manoj Vinayaka Hanabe Subramanya, Henry S. La Pierre, Grant R. Wilkinson, Maximilian G. Bernbeck, Stephen Hill
article en

Abstract

Abstract The results of pulsed EPR measurements at W-band (94 GHz) on a series of isovalent 4f7 ions (Eu2+, Gd3+, Tb4+) are presented, constituting the first example to date of pulsed EPR on molecular Tb4+. An inverse correlation is found between the 5 K phase memory relaxation times (Tm) and the degree of zero-field splitting (ZFS) in these complexes. This observation reveals the role of ZFS as an effective reporter not only of structural distortions away from ideal cubic symmetry, but also of the overall electronic structure changes wrought by chemical oxidation, which undermine the seemingly advantageous increases in excited state energies and metal–ligand covalency across the series. Building upon previous studies of the physical properties of high oxidation state lanthanide complexes, these results further highlight the necessity for detailed electronic structure–property relationship studies to fully map the electronic consequences of chemical oxidation in the lanthanides.

Inorganic Chemistry
Florida State University (US), Georgia Institute of Technology (US), Pacific Northwest National Laboratory (US)
Openalex Percentile: Top 32%
Magnetism in coordination complexes
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Oxidation State Effects on Decoherence in Isovalent 4f7 Complexes — Kavipriya Thangavel, Manoj Vinayaka Hanabe Subramanya, et al. · Inorganic Chemistry (2026) | TGRS Research Map | TGRS