Issue 3, 2025

Two-step spin transition around room temperature in a FeIII complex

Abstract

Spin-crossover (SCO) at room temperature is a pivotal goal within the field of molecular magnetism. Herein, we attempt to assemble FeIII SCO complexes using a substituted Hqsal ligand, H2L (N-(8-quinolyl)-2,3-dihydroxybenzaldimine). Two complexes [Fe(HL)2]·X·2MeCN (X = BF4 for 1 and X = ClO4 for 2) were obtained and characterized. Single-crystal X-ray diffraction study reveals that the solvent and counteranion contact with the main structure through hydrogen bonding that significantly influences the SCO properties. Magnetic study reveals that both complexes show a one-step reversible spin transition below room temperature with a hysteresis loop width of 10 K for complex 1 and 4 K for complex 2. After removing the solvents, two-step SCO with a hysteresis loop width of 32 and 62 K is observed around room temperature for complex 1, while one-step SCO is found in complex 2. Magneto-structural study reveals that the differences in the SCO properties are related to the hydrogen bonding and solvent effects, which facilitates the spin transition.

Graphical abstract: Two-step spin transition around room temperature in a FeIII complex

Supplementary files

Article information

Article type
Paper
Submitted
27 Sep 2024
Accepted
21 Nov 2024
First published
22 Nov 2024

Dalton Trans., 2025,54, 1231-1238

Two-step spin transition around room temperature in a FeIII complex

J. Wu, M. Li, Q. Yang, B. Zhang and J. Tang, Dalton Trans., 2025, 54, 1231 DOI: 10.1039/D4DT02736A

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