Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Saci Messaadi"'
Publikováno v:
Key Engineering Materials. 605:661-664
Elecrodeposited Ni-P alloy thin films have been the subject of extended investigations, since the pioneering works of Brenner et al, in the late 1940s. It is well known, that the physical and chemical properties of the Ni-P deposit composition are st
Publikováno v:
Key Engineering Materials. 605:665-668
Due to their soft operational capacity and magnetic properties, Iron Nickel alloys are of great commercial interest. A simple and inexpensive technique for the production of Nickel-Iron thin films is electrodeposition. A lot of physical and chemical
Autor:
Hadria Medouer, Abderrahim Guittoum, Mosbah Daamouche, N. Fenineche, Saci Messaadi, Ibtissem Zidani
Publikováno v:
Key Engineering Materials. 495:1-4
The aim of this work is to understand the early stages in the growth mechanism of invar (Fe64Ni34) alloys and also to study the influence of potential on the evolution of their crystalline structures. Fe64Ni34 layers were deposited onto copper substr
Autor:
Hadria Medouer, Abderrahim Guittoum, Mosbah Daamouche, Stefania Haido Karagianni, Saci Messaadi
Publikováno v:
Key Engineering Materials. 495:319-322
Ni-Fe alloys ranging in composition of Fe rich invar (Ni100-xFeX, where x ~ 64), have a variety of high technology applications due to their wide spectrum of physical properties. In this paper, the effects of the applied potential (-1.20V, -1.35V) an
Publikováno v:
Journal of Alloys and Compounds. 489:609-613
In their pioneering experimental work, Liu et al. have given the data related to the in situ sheet resistance measurements of polycrystalline ultrathin Cu films, where the resistivity ρ , was determined as a function of film thickness d . The aim of
Publikováno v:
Journal of Alloys and Compounds. 472:512-515
The metallic compounds Sr(NH3)6 and Li(NH3)4 are prepared in vacuum within cells of quartz. The non-reproducibility of Jacobs’ measurements of the heat capacity at high temperature of the compound Sr(NH3)6 led us to reconsider the thermal studies.