Reanalysis of Multichannel Field-Induced Magnetic Relaxation in a Selected Series of Co(II) Complexes

This study investigates field-supported slow relaxation of magnetization in 48 diverse Co(II) compounds, encompassing 0D, 1D, and 2D systems with coordination numbers 4, 5, and 6. Using AC susceptometry, out-of-phase susceptibility (χ″) was analyzed as a function of frequency, temperature, and DC field. Deconvolution via an extended Debye model reveals three distinct relaxation components: low-frequency (τLF ≈ 1 s), intermediate-frequency (τIF ≈ 1 ms), and high-frequency (τHF ≈ 1 μs) modes. While most complexes follow standard thermal behavior, the research highlights anomalous reciprocating thermal behavior (RTB), where relaxation times unexpectedly shorten upon cooling. By utilizing ln(τ) vs. ln(T) plots, the study points to relaxation mechanisms based on the power law expressed as 1/τ = CTn, including Raman (typically n = 5–9), direct (n = 1, field dependent), phonon bottleneck (n = 2), RTB (n = −1), Orbach (possibly n > 9), and quantum tunneling (n = 0) processes. Findings indicate that the Orbach mechanism is less common than traditionally assumed and that the retrieved experimental barrier (Ueff) is often a fictitious parameter. This study provides a critical reanalysis of the magnetic properties of a selected set of Co(II) complexes, with focus on slow magnetic relaxation.

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Publication Details

Journal
Magnetochemistry
Published
2026-09-29
DOI
https://doi.org/10.3390/magnetochemistry12100109
Primary Topic
Magnetism in coordination complexes
Type
article
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article

Reanalysis of Multichannel Field-Induced Magnetic Relaxation in a Selected Series of Co(II) Complexes

Roman Boča, Cyril Rajnák, Ján Titiš, Alina Bieńko
Magnetochemistry
Magnetism in coordination complexes
article

Reanalysis of Multichannel Field-Induced Magnetic Relaxation in a Selected Series of Co(II) Complexes

Roman Boča, Cyril Rajnák, Ján Titiš, Alina Bieńko
article en

Abstract

This study investigates field-supported slow relaxation of magnetization in 48 diverse Co(II) compounds, encompassing 0D, 1D, and 2D systems with coordination numbers 4, 5, and 6. Using AC susceptometry, out-of-phase susceptibility (χ″) was analyzed as a function of frequency, temperature, and DC field. Deconvolution via an extended Debye model reveals three distinct relaxation components: low-frequency (τLF ≈ 1 s), intermediate-frequency (τIF ≈ 1 ms), and high-frequency (τHF ≈ 1 μs) modes. While most complexes follow standard thermal behavior, the research highlights anomalous reciprocating thermal behavior (RTB), where relaxation times unexpectedly shorten upon cooling. By utilizing ln(τ) vs. ln(T) plots, the study points to relaxation mechanisms based on the power law expressed as 1/τ = CTn, including Raman (typically n = 5–9), direct (n = 1, field dependent), phonon bottleneck (n = 2), RTB (n = −1), Orbach (possibly n > 9), and quantum tunneling (n = 0) processes. Findings indicate that the Orbach mechanism is less common than traditionally assumed and that the retrieved experimental barrier (Ueff) is often a fictitious parameter. This study provides a critical reanalysis of the magnetic properties of a selected set of Co(II) complexes, with focus on slow magnetic relaxation.

MagnetochemistryVol. 12(10)
University of Wrocław (PL), University of Ss. Cyril and Methodius in Trnava (SK)
Openalex Percentile: Top 30%
Magnetism in coordination complexes
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Reanalysis of Multichannel Field-Induced Magnetic Relaxation in a Selected Series of Co(II) Complexes — Roman Boča, Cyril Rajnák, et al. · Magnetochemistry (2026) | TGRS Research Map | TGRS