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Ferrocenyl-substituted nitronyl nitroxide in the design of one-dimensional magnets.

Kseniya Yu MaryuninaDaria NigomedyanovaVitaly MorozovKristina A SmirnovaGleb A LetyaginGalina V RomanenkoNikolay EfimovArtem S BogomyakovVictor I Ovcharenko
Published in: Dalton transactions (Cambridge, England : 2003) (2024)
By the reaction of M(hfac) 2 (M = Mn(II), Co(II), Cu(II), and Zn(II); hfac is the hexafluoroacetylacetonate anion) and ferrocenyl-substituted nitronyl nitroxide (L), we succeeded in the synthesis of stable heterospin complexes: mononuclear [Zn(hfac) 2 L], trinuclear {[Cu(hfac) 2 ] 3 L 2 } and chain polymer [Mn(hfac) 2 L] n and [Co(hfac) 2 L] n . The specific steric bulkiness of the ferrocenyl substituent leads to the formation of trans -type coordination polyhedra in the [Mn(hfac) 2 L] n and [Co(hfac) 2 L] n chains. The introduction of the ferrocene substituent leads to an effective weakening of intermolecular or interchain magnetic exchange coupling. Ferrimagnetic ordering was observed for one-dimensional complexes [M(hfac) 2 L] n (M = Mn(II), Co(II)). [Co(hfac) 2 L] n exhibits features of single-chain magnet behaviour: slow relaxation of magnetization below 13 K is associated with a high coercive field (54 kOe at 2 K).
Keyphrases
  • room temperature
  • metal organic framework
  • mass spectrometry
  • energy transfer