Abstract

Two synthetic procedures have been employed that allow access to the new tetranuclear cluster [Fe 4O 2(O 2CMe) 6(N 3) 2(phen) 2] ( 1), where phen is 1,10-phenanthroline. Complex 1 · 3MeCN displays an unusual structural asymmetry (observed for the second time) in its [Fe 4O 2] 8+ core that can be considered as a hybrid of the bent (butterfly) and planar dispositions of four metal ions seen previously in such compounds with transition metals. Complex 1 has been characterized by variable-temperature magnetic susceptibility studies, and by IR and variable-temperature 57Fe Mössbauer spectroscopies. Magnetochemical data reveal a diamagnetic ground state ( S=0) with antiferromagnetic body–body and body–wingtip interactions between the iron(III) ions of the butterfly core ( J bb=−11 cm −1, J wb=−70 cm −1). Magnetochemical and Mössbauer studies on 1 show that its structural asymmetry has practically no influence on these properties compared with the more symmetric types.

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