Abstract:Approximately 1.8 µm thick nanolayered multilayer coatings of TiN/CrN (also known as superlattices) were deposited on silicon (1 0 0) substrates at different modulation wavelengths (4.6–12.8 nm), substrate temperatures (50–400 °C) and substrate bias voltages (−50 to −200 V) using a reactive direct current magnetron sputtering system. The x-ray reflectivity (XRR) technique was employed to determine various properties of the multilayers such as interface roughness, surface roughness, electron density, critical a… Show more
“…Fig. 2c shows the elemental compositions of deposited [TiN/ZrN] 12 multilayer film, where was observed the stoichiometric ratio (Ti/Zr = 1.32), which correspond to stoichiometric values from Ti and Zr elements in TiN/ZrN films [1][2][3][4][5][6][7][8][9][10][11][12][13][14][15][16][17]. A careful correction has to be done in all stoichiometric analysis because EDX has low reliability for nitrogen concentration.…”
Section: Methodsmentioning
confidence: 99%
“…It is known that over the past decade, multilayered films of transition metal nitrides have received considerable interest for their outstanding properties within a narrow range of bilayer thicknesses [1]. Superior mechanical properties such as extreme hardness and good wear resistance have been reported [2,3].…”
“…Fig. 2c shows the elemental compositions of deposited [TiN/ZrN] 12 multilayer film, where was observed the stoichiometric ratio (Ti/Zr = 1.32), which correspond to stoichiometric values from Ti and Zr elements in TiN/ZrN films [1][2][3][4][5][6][7][8][9][10][11][12][13][14][15][16][17]. A careful correction has to be done in all stoichiometric analysis because EDX has low reliability for nitrogen concentration.…”
Section: Methodsmentioning
confidence: 99%
“…It is known that over the past decade, multilayered films of transition metal nitrides have received considerable interest for their outstanding properties within a narrow range of bilayer thicknesses [1]. Superior mechanical properties such as extreme hardness and good wear resistance have been reported [2,3].…”
“…The calculation used is based on path-length calculations of interference in thin films. [50][51][52][53] A similar value (81 AE 2 nm) for the thickness was obtained from the Fast Fourier Transform (FFT) of the data. 54 The data were fit using the segmented fit algorithm.…”
Section: Structural Characterisation Of Inter-grown and Pure N ¼ 6 Filmsmentioning
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