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Ferrimagnets made by assembling high- spin organic polyradicals by mean of complexation with magnetic metal ions. Vii. One- dimensional chains made by an alternating array of mn(ll)(hfac)2 and 1,3- bis(n- oxy- tert-butylamino)benzenes

Published online by Cambridge University Press:  10 February 2011

Katsuya Inoue
Affiliation:
Department of Chemistry, School of Science, Kitasato University, 1- 15- 1 Kitasato, Sagamihara, Kanagawa 228, Japan, kino@kitasato-u.ac.jp
Hiizu lwamura
Affiliation:
Institute for Fundamental Research in Organic Chemistry Kyushu University, Hakozaki, Higashi- ku, Fukuoka 812- 81, Japan, iwamura@ms.ifoc.kyushu-u.ac.jp
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Abstract

Manganese bis(hexafluoroacetylacetonate), Mn(hfac)2, reacts with a series of bisnitroxide radicals, 5- R- 1,3- bis(N- oxy- tert- butylamino)benzene 1R (R = H, Cl, and Br), to give 1:1 polymeric complexes of formula [Mn(hfac)2·1R]n. The X- ray crystal structure of the 1H complex reveals that it crystallizes in the monoclinic system, space group P21/n, with a= 9.212(3) Å, b= 16.620(3) Å, c= 20.088(2) Å, β= 98.46(1)°, V= 3042(1)Å3, and Z= 4. The manganese(II) ion and 1H molecule makes onedimensional chains by ligation of the latter serving as a bis(monodentate) ligand to the former. The crystals of the 1H complex undergo transition to a metamagnet at 5.5 K. Similar 1cl and 1Br complexes behave as ferrimagnets with transition temperatures of 5.2 and 5.0 K, respectively.

Type
Research Article
Copyright
Copyright © Materials Research Society 1996

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References

REFERENCES

1. (a) Miller, J. S., Epstein, A. J., and Reiff, W. M., Chem. Rev., 1988, 88,201; (b) J. S. Miller and D. A. Dougherty, Eds., Ferromagnetic and High Spin Molecular Based Materials, Mol. Cryst. Liq. Cryst., 1989, 176; (c) D. Gatteschi, O. Kahn, J. S. Miller, and F. Palacio, Eds., Magnetic Molecular Materials, NATO ARI Series E, Kluwer Academic Publishers 1991, E198; (d) H. Iwamura and J. S. Miller, Eds., Chemistry and Physics of Molecular Based Magnetic Materials, Mol. Cryst. Liq.Cryst., 1993, 232 and 233; (e) J. S. Miller and A. J. Epstein, Angew. Chem., Int. Ed. Engl., 1994, 33, 385.Google Scholar
2. Caneschi, A., Gatteschi, D., and Ray, P., Progr. Inorg. Chem., 1991, 39,331; A. Caneschi, D. Gatteschi, and R. Sessoli, ref. 1c, p. 215.Google Scholar
3. Benelli, C., Dei, A., Gatteschi, D., Gudel, H. U., and Pardi, L., Inorg. Chem., 1989, 28, 3089; A. Caneschi, D. Gatteschi, R. Sessoli, and P. Rey, Acc. Chem. Res., 1989, 22,392.Google Scholar
4. (a) Inoue, K. and Iwamura, H., J. Am. Chem. Soc., 1994, 116, 3173; (b) K. Inoue and H. Iwamura, J. Chem. Soc.,Chem. Commun., 1994, 2274; (c) K. Inoue, T. Hayamizu, H. Iwamura, Chem. lett., 1995, 745; (d) K. Inoue and H. Iwamura, Syn. Met., 1995, 71,1793; (e) Inoue, T. Hayamizu,.and H. Iwamura, Mol. Cryst. Liq. Cryst., 1995, in press; (f) H. Iwamura, K. Inoue, and T. Hayamizu, Pure AppL. Chem., 1996, in press.Google Scholar
5. (a) Calder, A., Forrester, A. R., James, P. G., and Luckhurst, G. R., J. Am. Chem. Soc., 1969, 91,3724; (b) K. Mukai, H. Nagai, and K. Ishizu, Bull. Chem. Soc. Jpn., 1975, 48, 2381; (c) T. Ishida and H. Iwamura, J. Am. Chem. Soc., 1991, 113, 4238; (d) F. Kanno, K. Inoue, N. Koga, and H. Iwamura, J. Phys. Chem., 1993, 97,13267.Google Scholar
6. Capiomont, A., Brown, J., Guillon, B., and Schweizer, J., J. Magn. Magn. Mat., 1979,14,289; P. J. Brown, A. Capiomont, B. Guillon, and J. Schweizer, Mol. Phys., 1983, 48,753.Google Scholar
7. McConnell, H. M., J. Chem. Phys., 1963, 39,1910; A. Izuoka, S. Murata, T. Sugawara, and H. Iwamura, J. Am. Chem. Soc., 1987,109, 2631.Google Scholar
8. Candela, G. A., Swartzendruber, L., Miller, J. S., and Rice, M. J., J. Am. Chem. Soc., 1979, 101,2755.Google Scholar