Published May 25, 2008 | Version v1
Journal article

Role of the substrate on the growth of Ni-Ti sputtered thin films

  • 1. Forschungszentrum Rossendorf, P.O. Box 510119, D-01314 Dresden (Germany)
  • 2. CENIMAT, Campus da FCT/UNL, 2829-516 Monte de Caparica (Portugal)

Description

Ni-Ti thin films have been recognized as promising and high performance materials in the field of microelectromechanical system applications. However, important issues like formation of film texture and its control are still unresolved. Widening the scope of previous experiments concerning the influence of the deposition parameters on the Ni-Ti films structure, here we show how different crystallographic orientations can be obtained by changing the substrate type. The growth of near-equiatomic Ni-Ti films, deposited by magnetron co-sputtering from Ni-Ti and Ti targets on heated substrates (∼470 deg. C), has been studied in situ by X-ray diffraction at a synchrotron radiation beamline. As mentioned in other studies for depositions on Si100, a 1 1 0 fiber texture is observed for the B2 phase. However, a preferential stacking of 1 0 0 planes of the B2 phase parallel to the film surface was observed when using a MgO100 substrate. The preferential orientation of B2100||MgO100 was very strong and was kept as such until the end of the deposition, which lasted for 7.2 ks (∼900 nm). Ni-Ti films were also deposited on a TiN layer (∼15 nm) previously deposited on top of a SiO2/Si100 substrate. In this case, a crossover from 1 1 0 oriented grains dominating at small thicknesses, to 2 1 1 oriented grains taking over at larger thicknesses was observed. These are promising results concerning the manipulation of the crystallographic orientations of Ni-Ti thin films, since the texture has a strong influence on the extent of the strain recovery

Availability note (English)

Available from http://dx.doi.org/10.1016/j.msea.2006.12.225

Additional details

Identifiers

DOI
10.1016/j.msea.2006.12.225;
PII
S0921-5093(07)01250-6;

Publishing Information

Journal Title
Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing
Journal Volume
481-482
Journal Page Range
p. 626-629
ISSN
0921-5093
CODEN
MSAPE3

Conference

Title
7. European symposium on martensitic transformations
Acronym
ESOMAT 2006
Dates
10-15 Sep 2006
Place
Bochum (Germany)

Optional Information

Copyright
Copyright (c) 2007 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.