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Characterization of ferromagnetic composite materials for biomedical applications

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The great technological development in materials engineering together with quantum mechanical effect called giant magnetoresistance (GMR) observed in thin film structures composed of alternating ferromagnetic and nonmagnetic metal layers have evolved to the point where their synergistic combination have culminated in a new field of multidisciplinary research and in new applications. Paper shows results of investigations of nanocomposites consisting of magnetic metallic (alloy) nanoparticles (MMNPs) embedded in a dielectric matrix (like SiO2 or Al2O3). The studied (Fe0.45Co0.45Zr0.10)x(Al2O3)100-x(17
Słowa kluczowe
Rocznik
Strony
6--7
Opis fizyczny
Bibliogr. 14 poz., wykr.
Twórcy
autor
  • NC PHEP Belarusian State University, 220040 Minsk, Belarus
autor
  • AGH University of Science and Technology, Faculty of Materials Science and Ceramics, 39, Mickiewicza Al., 30-059 Cracow, Poland
Bibliografia
  • [1] Magnetic properties of superlattices formed from ferromagnetic and antiferromagnetic materials, L. L. Hinchey and D. L. Mills, Physical Review B, vol. 33, no. 5, pp. 3329, March 1986.
  • [2] Layered Magnetic Structures: Evidence for Antiferromagnetic Coupling of Fe Layers across Cr interlayers, P. Grunberg, R. Schreiber, Y Pang, M. B. Brodsky, and H. Sowers, Physical Review Letters, vol. 57, no. 19, pp 2442, November, 1986.
  • [3] Antiparallel coupling between Fe layers separated by a Cr interlayer: Dependence of the magnetization on the film thickness, C. Carbone and S. F. Alvarado, Physical Review B, vol. 36, no. 4, pp. 2433, August 1987.
  • [4] Giant Magnetoresistance of (001)Fe/(001)Cr Magnetic Superlattices, M. N. Baibich, J. M. Broto, A. Fert, F. Nguyen Van Dau, F. Petroff, P. Etienne, G. Creuzet, A. Friederich, and J. Chazelas, Physical Review Letters, vol. 61, no. 21, pp. 2472. November 1988.
  • [5] Theoretical and experimental investigation on giant magnetoresistive materials with amorphous ferromagnetic layer. Qi-ye Wen, Huai-wu Zhang, Yuan-qiang Song and Xiang-dong Jiang, Transactions of Nonferrous Metals Society of China; Volume 16, Supplement 1, June 2006, Pages s59-s62.
  • [6] Theory of Giant Magnetoresistance Effects in Magnetic Layered Structures with Antiferromagnetic Coupling by R. E. Camley and J. Barnas, Physical Review Letters, 7 Aug. 1998, vol. 63, No. 6, pp. 664 to 667.
  • [7] Giant magnetoresistance in soft ferromagnetic multilayers by B. Dieny, V.S. Speriosu, S.S.P. Parkin, B.A. Gurney. D.R. Wilhoit, and D. Mauri; 8073b Physical Review B: Condensed Matter 43 (1991) 1, Jan., No. 1, Part B, New York, US; vol. 43, No. 1; 1 Jan. 1991.
  • [8] Magnetoresistance in magnetic manganeses oxide with intrinsic antiferromagnetic spin structure by Ken-ichi Chahara, Toshiyuki Ohno, Masahiro Kasai, and Yuzoo Kozono-Hitachi Research Laboratory, Hitachi Ltd., Hitachi 319-12, Japan; Appl. Phys. Lett. 63 (14); 4 Oct. 1993.
  • [9] Giant Negative Magnetoresistance in Perovskitelike La2/3 Ba1/3 Ferromagnetic Films by R. von Helmolt, J. Wecker, B. Holzapfel, L. Schultz, and K. Samwer; Physical Review Letters, vol. 71, No. 14; 4 Oct. 1993; pp. 2331 to 2333.
  • [10] O Schneeweiss, Nanotechnology 17 (2006) 607.
  • [11] J. Inoe, S. Markava. Phys. Rev. B 53 (1996) R11927.
  • [12] A. M. Saad, et al. Rev. Adv. Mater. Sci. 8(1996) 34.
  • [13] J. Fedotova, A. Larkin, et al. In: physics, chemistry and application of nanostructures (2007) 62.
  • [14] M. Sorescu, A. Grabias. Intermetallics 10 (2002) 317.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-AGH5-0014-0088
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