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Multifractal characteristics of titanium nitride thin films

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The study presents a multi-scale microstructural characterization of three-dimensional (3-D) micro-textured surface of titanium nitride (TiN) thin films prepared by reactive DC magnetron sputtering in correlation with substrate temperature variation. Topographical characterization of the surfaces, obtained by atomic force microscopy (AFM) analysis, was realized by an innovative multifractal method which may be applied for AFM data. The surface micromorphology demonstrates that the multifractal geometry of TiN thin films can be characterized at nanometer scale by the generalized dimensions Dq and the singularity spectrum f(α). Furthermore, to improve the 3-D surface characterization according with ISO 25178-2:2012, the most relevant 3-D surface roughness parameters were calculated. To quantify the 3 D nanostructure surface of TiN thin films a multifractal approach was developed and validated, which can be used for the characterization of topographical changes due to the substrate temperature variation.
Wydawca
Rocznik
Strony
541--548
Opis fizyczny
Bibliogr. 36 poz., rys., tab.
Twórcy
autor
  • Technical University of Cluj-Napoca, Faculty of Mechanical Engineering, Department of AET, Discipline of Descriptive Geometry and Engineering Graphics, 103 – 105 B-dul Muncii St., Cluj-Napoca 400641, Cluj, Romania
autor
  • University of Silesia, Faculty of Computer Science and Materials Science, Institute of Informatics, Department of Biomedical Computer Systems, Będzińska 39, 41-205 Sosnowiec, Poland
autor
  • Islamic Azad University, Plasma Physics Research Center, Science and Research Branch, P.O. Box 14665-678, Tehran, Iran
autor
  • Islamic Azad University, Plasma Physics Research Center, Science and Research Branch, P.O. Box 14665-678, Tehran, Iran
autor
  • Islamic Azad University, Plasma Physics Research Center, Science and Research Branch, P.O. Box 14665-678, Tehran, Iran
autor
  • University of Craiova, Faculty of Mechanical Engineering, Department of Applied Mechanics, 165 Calea Bucure¸sti St., Craiova, 200585, Dolj, Romania
Bibliografia
  • [1] TALU S., GHAZAI A.J., STACH S., HASSAN A., HASSAN Z., TALU M., J. Mater. Sci.-Mater. El., 25 (1) (2014), 466.
  • [2] DALLAEVA D., TALU S., STACH S., ŠKARVADA P., TOMÁNEK P., GRMELA L., Appl. Surf. Sci., 312 (2014), 81.
  • [3] STACH S., DALLAEVA D., TALU S., KASPAR P., TOMÁNEK P., GIOVANZANA S., GRMELA L., Mater. Sci.-Poland, 33 (1) (2015), 175.
  • [4] TALU S., STACH S., SOLAYMANI S., MORADIAN R., GHADERI A., HANTEHZADEH M.R., ELAHI S.M., GARCZYK ˙Z., IZADYAR S., J. Electroanal. Chem., 749 (2015), 31.
  • [5] CHOU W.J., YU G.P., HUANG J.H., Surf. Coat. Tech., 140 (3) (2001), 206.
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  • [10] ALMTOFT K.P., Structural characterization of nanocrystalline thin films grown by magnetron sputtering, PhD Thesis, University of Aarhus, Denmark, 2006.
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  • [12] ELLMER K., MIENTUS R., Reactive DC magnetron sputtering of elemental targets in Ar/O2-mixtures: relation between the discharge characteristics and the heat of formation of the corresponding oxides, in: HECHT R. (Ed.), Thin films: proceedings of the joint 4. International symposium on trends and new applications in thin films – TATF ’94 and the 11. conference on high vacuum, interfaces and thin films – HVITF ‘94. [S.l.], Dresden, Germany, 1994, p. 131.
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  • [16] ISO 25178-2:2012, Geometrical product specifications (GPS) – Surface texture: Areal – Part 2: Terms, definitions and surface texture parameters, available from: http://www.iso.org (last accessed May 20th, 2015).
  • [17] TALU S., STACH S., Polym Eng. Sci., 54 (5) (2014), 1066.
  • [18] TALU S., MARKOVI´C Z., STACH S., MARKOVI´C B.T., TALU M., Appl Surf Sci., 289 (2014), 97.
  • [19] TALU S., STACH S., MÉNDEZ A., TREJO G., TALU M., J. Electrochem. Soc., 161 (2014), D44.
  • [20] TALU S., STACH S., MAHAJAN A., PATHAK D., WAGNER T., KUMAR A., BEDI R.K., TALU M., Electron. Mater. Lett., 10 (4) (2014), 719.
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  • [26] TALU S., STACH S., GHODSELAHI T., GHADERI A., SOLAYMANI S., BOOCHANI A., GARCZYK ˙Z., J. Phys. Chem. B, 119 (17) (2015), 5662.
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  • [31] YADAV R.P., DWIVEDI S., MITTAL A.K., KUMAR M., PANDEY A.C., Appl. Surf. Sci., 261 (2012), 547.
  • [32] TALU S., STACH S., ZAHARIEVA J., GETSOVA M, ELENKOVA D., MILANOVA M., Int. J. Polym. Anal. Ch., 19 (7) (2014), 648.
  • [33] ELENKOVA D., ZAHARIEVA J., GETSOVA M., MANOLOV I., MILANOVA M., STACH S., TALU S., Int. J. Polym. Anal. Ch., 20 (1) (2015), 42.
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7e192e0d-4038-40f3-a143-c3df58495170
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