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References

Articles:

Dumesnil, K., Dufour, C., Fernandez, S., Oudich, M., Avisou, A., Rogalev, A. and Wilhelm, F.
Journal of Physics Condensed Matter, 21(23)
2009

Equipe: Département P2M : Nanomagnétisme et Electronique de Spin

Candolfi, C, Lenoir, B, Dauscher, A, Hejtmanek, J and Tobola, J
Physical review B, 79(23):235108
2009

Equipe: Département CP2S : Matériaux à propriétés thermoélectriques

Fitzsimmons, M.R., Dufour, C., Dumesnil, K., Dou, J. and Pechan, M.
Physical Review B - Condensed Matter and Materials Physics, 79(14)
2009

Equipe: Département P2M : Nanomagnétisme et Electronique de Spin

Vigolo, B, Vincent, B, Eschbach, J, Bourson, P, Marêchè, J-F, McRae, E, MMüller, A, Soldatov, AV, Hiver, J-M, Dahoun, A and Rouxel, D
Journal of physical chemistry C, 113(41):17648-17654
2009

Equipe: Département CP2S : Matériaux Carbonés

Candolfi, C, Lenoir, B, Leszczynski, J, Dauscher, A, Tobola, J, Clarke, S and Smith, R
Inorganic chemistry, 48(12):5216-5223
2009

Equipe: Département CP2S : Matériaux à propriétés thermoélectriques

Vitelaru, C, De Poucques, L, Hytkova, T, Minea, T M, Boisse-Laporte, C, Bretagne, J and Popa, G
Plasma processes and polymers, 6:S326
2009

Equipe: Département CP2S : Expériences et Simulations des Plasmas Réactifs - Interaction plasma-surface et Traitement des Surfaces ESPRITS

Horwat, D., Dehmas, M., Aubry, E., Zollinger, J., Migot, S. and Pierson, J.F.
Intermetallics, 17:421-426
2009

Equipe: Département CP2S : Elaboration et Fonctionnalité de Couches Minces

Horwat, D., Dehmas, M., Aubry, E., Zollinger, J., Migot, S. and Pierson, J. F.
Intermetallics, 17(6):421-426
2009
ISSN: 0966-9795

Resume: WxZr1-x thin films were deposited at room temperature on glass substrates by co-sputtering tungsten and zirconium targets in argon. The composition was found in the range 0 <= x <= 0.81. The grain size deduced from X-ray diffraction analysis ranged from 1.3 nm to 16 nm depending on the composition. The events in the resistivity, optical reflectivity and thickness evolutions were correlated with the X-ray diffraction analysis. Depending on the composition, the local organization can be attributed to a nanocrystalline solid solution of W in Zr, to a nanocomposite structure involving ZrW2 nanograins embedded in an amorphous matrix. to ZrW2 Laves phase nanograins and to a nanocrystalline solid solution of Zr in W. For 0 < x <= 0.72, the equivalent grain size is very small (less than 2 nm) and the evolution of the resistivity can be fitted by the estimated volume of the material perturbed by the grain boundaries. (C) 2008 Elsevier Ltd. All rights reserved.

Equipe: Département SI2M : Microstructures et Contraintes

D. Horwat, M. Dehmas, E. Aubry, J. Zollinger, S. Migot and Pierson, J.F.
Intermetallics, 17:421-426
2009

Equipe: Centre de Compétences : Microscopies et Microsondes

Hutchinson, C.R., Loo, P.T., Bastow, T.J., Hill, A.J. and da Costa Teixeira, J.
Acta Materialia, 57(19):5645-5653
2009
ISSN: 1359-6454

Equipe: Département SI2M : Microstructures et Contraintes

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