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May 15, 2026Reviews in Inorganic Chemistry1 citationsOpen Access

Spin crossover Fe(III) complexes with tetradentate Schiff base ligands

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ОТО. А. ТурановаАТА. Н. Туранов

Key Points

  • The aim is to review the synthesis and properties of Fe(III) complexes exhibiting spin crossover behavior with tetradentate Schiff base ligands.
  • Reviewed existing literature on synthesis of spin-crossover Fe(III) complexes.
  • Analyzed the influence of molecular structure on spin-crossover properties.
  • Considered types of ligands, including axial and equatorial ligands.
  • Synthesis of various mononuclear and polynuclear Fe(III) complexes with spin transition capabilities.
  • The structural characteristics significantly affect the high to low spin transition temperature.
  • Presence of axial ligands enhances control over spin-crossover properties.

Abstract

Abstract Fe(III) complexes are capable of exhibiting a spin transition between high spin and low spin states under the influence of external stimuli, such as temperature, pressure, photoradiation, phase change, etc . In this case, the structural and magnetic characteristics change without changing the composition. The creation of new spin-crossover compounds with predetermined switching properties is important for applied purposes. This review collects and summarizes the results of the synthesis and study of the spin-crossover properties of Fe(III) complexes with symmetric tetradentate Schiff bases. The influence of the molecular structure on the spin-crossover properties is considered. A unique feature of tetradentate ligands is the possibility of obtaining both mononuclear and polynuclear Fe(III) complexes on their basis. The presence of an axial ligand is an additional channel for controlling the spin-crossover properties in addition to equatorial ligands, counterions, and solvated molecules.

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Cite This Study

Туранова et al. (2026) studied this question.

synapsesocial.com/papers/6a06b888e7dec685947aaf5dhttps://doi.org/10.1515/revic-2026-0022
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