A missing high-spin molecule in the family of cyano-bridged heptanuclear heterometal complexes, [(LCuII)6FeIII(CN)6]3+, and its CoIII and CrIII analogues, accompanied in the crystal by a novel octameric water cluster
Catalin Maxim, Lorenzo Sorace, Panchanana Khuntia, Augustin M., Madalan, Alessandro Lascialfari, Andrea Caneschi, Yves Journauxe, Marius, Andruh

TL;DR
This study reports the synthesis and structural characterization of three isostructural cyano-bridged heptanuclear complexes with a novel octameric water cluster, revealing magnetic interactions and a missing high-spin molecule in this family.
Contribution
The paper introduces a new family of cyano-bridged heptanuclear complexes with a unique water cluster and details their magnetic properties, including ferromagnetic couplings and intramolecular interactions.
Findings
Presence of a novel octameric water cluster in the crystal structure.
Ferromagnetic coupling between FeIII/CrIII and CuII ions.
Intramolecular Cu-Cu exchange interaction observed.
Abstract
Three isostructural cyano-bridged heptanuclear complexes, [{CuII(saldmen)(H2O)}6{MIII(CN)6}](ClO4)38H2O (M = FeIII 2; CoIII, 3; CrIII 4), have been obtained by reacting the binuclear copper(II) complex, [Cu2(saldmen)2(mu-H2O)(H2O)2](ClO4)22H2O 1, with K3[Co(CN)6], K4[Fe(CN)6], and, respectively, K3[Cr(CN)6] (Hsaldmen is the Schiff base resulted from the condensation of salicylaldehyde with N,N-dimethylethylenediamine). A unique octameric water cluster, with bicyclo[2,2,2]octane-like structure, is sandwiched between the heptanuclear cations in 2, 3 and 4. The cryomagnetic investigations of compounds 2 and 4 reveal ferromagnetic couplings of the central FeIII or CrIII ions with the CuII ions (JCuFe = +0.87 cm-1, JCuCr = +30.4 cm-1). The intramolecular Cu-Cu exchange interaction in 3, across the diamagnetic cobalt(III) ion, is -0.3 cm-1. The solid-state1H-NMR spectra of…
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