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Magnetic properties organic magnets

G. I. Stegeman and W. TormeUas, E/ectrica/, Optical, and Magnetic Properties of Organic Solid State Materials, Materials Research Society, Pittsburgh, 1994, pp. 397-412. [Pg.140]

R. Saito, M. Fujita, G, Dresselhaus, and M. S. Dresselhaus, In Electrical, Optical and Magnetic Properties of Organic Solid State Materials, MRS Symposia Proceedings, Boston. Edited by L. Y. Chiang, A. F. Garito, and D. J. Sandman, vol, 247, p. 333, Pittsburgh, PA, Materials Research Society Press (1992),... [Pg.35]

Muller, K., Kothe, G., and Wassmer, K.-H. Dynamic Magnetic Resonance of Liquid crystal Polymers Molecular Organization and Macroscopic Properties. Vol. 95, pp. 1 — 56. [Pg.157]

Hu, X. L., Studies on the Formation and Properties of Ultra-Organic Thin Films on the Magnetic Head, Ph.D. Thesis, Tsinghua University, Beijing, China, 2005. [Pg.235]

Under deposition of cobalt nanocrystals, self-assemblies of particles are observed and the nanocrystals are organized in a hexagonal network (Fig. 2). However, it can be seen that the grid is not totally covered. We do not have a simple explanation for such behavior. In fact, the size distribution, which is one of the major parameters in controlling monolayer formation, is similar to that observed with the other nanocrystals, such as silver and silver sulfide. One of the reasons could be that the nanocrystals have magnetic properties, but there is at present no evidence for such an assumption. [Pg.318]


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See also in sourсe #XX -- [ Pg.118 ]

See also in sourсe #XX -- [ Pg.116 ]

See also in sourсe #XX -- [ Pg.117 ]




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