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Articles:

Mège-Revil, A., Steyer, P., Fontaine, J., Pierson, J.F. and Esnouf, C.
Surface and Coatings Technology, 204:973-977
2009

Equipe: Département CP2S : Elaboration et Fonctionnalité de Couches Minces

Moreira, F., Sarry, F., Nicolas-Debarnot, D., Elmazria, O. and Poncin-Epaillard, F.
EPJ Applied Physics, 47(1)
2009

Equipe: Centre de Compétences : MiNaLor micro et nanotechnologies

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

Maniana, M., Azim, A., Rhanim, H. and Archambault, P.
International Journal of Thermal Sciences, 48:795--804
2009

Equipe: Département SI2M : Microstructures et Contraintes

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

Mangin, S., Henry, Y., Ravelosona, D., Katine, J.A. and Fullerton, E.E.
Applied Physics Letters, 94(1)
2009

Equipe: Département P2M : Nanomagnétisme et Electronique de Spin

Simon, Q, Bouquet, V, Peng, W, Peng, W, Le, Floch, JM, Houdonougbo, F, Deputier, S, Weber, S, Dauscher, A, Madrangeas, V, Cros, D and Guilloux-Viry, M
Thin solid films, 517(20):5940-5942
2009

Equipe: Département CP2S : Matériaux à propriétés thermoélectriques

MECHLING, J-M., LECOMTE, A. and DILIBERTO, C.
Cement and Concrete Composites, 31(4):255-262
2009

Equipe: Département CP2S : Matériaux pour le Génie Civil

M. Trassin, N. Viart, G. Versini, S. Barr, G. Pourroy, J. Lee, W. Jo, K. Dumesnil, C. Dufour and Robert, S.
Journal of Materials Chemistry, 19 â?? 46:8876-8880
2009

Equipe: Centre de Compétences : X-Gamma rayons X et spectroscopie

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