Synthesis, solid-slate structure, magnetic properties and Mossbauer spectral studies of {Fe[HC(3,5-Me(2)pz)(3)](H2O)(3)} (BF4)(2)

Citation
Dl. Reger et al., Synthesis, solid-slate structure, magnetic properties and Mossbauer spectral studies of {Fe[HC(3,5-Me(2)pz)(3)](H2O)(3)} (BF4)(2), INORG CHIM, 316(1-2), 2001, pp. 65-70
Citations number
34
Categorie Soggetti
Inorganic & Nuclear Chemistry
Journal title
INORGANICA CHIMICA ACTA
ISSN journal
00201693 → ACNP
Volume
316
Issue
1-2
Year of publication
2001
Pages
65 - 70
Database
ISI
SICI code
0020-1693(20010507)316:1-2<65:SSSMPA>2.0.ZU;2-T
Abstract
The reaction of Fe(BF4)(2). 6H(2)O and one equivalent of HC(3,5-Me(2)pz)(3) in acetonitrile leads to the formation of {Fe[HC(3,5-Me(2)pz)(3)](H2O)(3)} (BF4)(2). The solution phase H-1 NMR spectrum is broad with chemical shifts ranging from 54 to -42 ppm, a range that is indicative of a paramagnetic h igh-spin complex. Magnetic moment measurements show that the complex is par amagnetic in the solid-state with mu (eff)=4.89 mu (B). The solid-state str ucture shows the N3FeO3 central core is a distorted octahedron with N-Fe-N angles averaging 84.4 degrees and O-Fe-O angles averaging 90.0 degrees. The average Fe-N distance is 2.18 Angstrom and the average Fe-O bond distance is 2.12 Angstrom. Mossbauer spectra, obtained at 78 and 295 K, clearly reve al that this complex is high-spin at these temperatures with hyperfine para meters typical of a pseudooctahedral iron(II) complex. (C) 2001 Elsevier Sc ience B.V. All rights reserved.