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Wetting properties of titanium oxides, oxynitrides and nitrides obtained by DC and pulsed magnetron sputtering and cathodic arc evaporation Cover

Wetting properties of titanium oxides, oxynitrides and nitrides obtained by DC and pulsed magnetron sputtering and cathodic arc evaporation

Open Access
|Aug 2019

References

  1. [1] Parkin I.P., Palgrave R.G., J. Mater. Chem., 15 (2005), 1689.10.1039/b418110g
  2. [2] Ganesh V.A., Raut H.K., Nair A.S., Ramakrishna S.A., J. Mater. Chem., 21 (2011), 16304.10.1039/c1jm12523k
  3. [3] Ragesh P., Ganesh V.A., Nair S.V., Nair A.S., J. Mater. Chem., A2 (2014), 14773.10.1039/C4TA02542C
  4. [4] Choi W., Tuteja A., Mabry J.M., Cohen R.E., McKinley G.H., J. Colloid. Interf. Sci., 339 (2009), 208.10.1016/j.jcis.2009.07.02719683717
  5. [5] Jokanović V., Vilotijević M., Jokanović B., Jenko M., Anžel I., Stamenković D., Lazic V., Rudolf R., Corr. Sci., 82 (2014), 180.10.1016/j.corsci.2014.01.014
  6. [6] Feng L., Li S., Li Y., Li H., Zhang L., Zhai J., Song Y., Liu B., Jiang L., Zhu D., Adv. Mater., 14 (2002), 1857.10.1002/adma.200290020
  7. [7] Balaur E., Macak J.M., Taveira L., Schmuki P., Electrochem. Commun., 7 (2005),1066.10.1016/j.elecom.2005.07.014
  8. [8] Nakajima A., NPG Asia Mater., 3 (2011), 49.10.1038/asiamat.2011.55
  9. [9] Drelich J., Chibowski E., Meng D.D., Terpilowski K., Soft Mater., 7 (2011), 9804.10.1039/c1sm05849e
  10. [10] Xu L.C., Siedlecki C.A., Biomaterials, 28 (2007), 3273.10.1016/j.biomaterials.2007.03.032367191417466368
  11. [11] Gittens R.A., Scheideler L., Rupp F., Hyzy S.H., Geis-Gerstorfer J., Schwartz Z., Boyan B.D., Acta Biomater., 10 (2014), 2907.10.1016/j.actbio.2014.03.032
  12. [12] Rawal S.K., Chawla A.K., Jayagantha R.N, Chandra R., J. Mater. Sci. Technol., 28(2012), 512.10.1016/S1005-0302(12)60091-7
  13. [13] Karagkiozaki V., Logothetidis S., Kalfagiannis N., Lousinian S., Giannoglou G., Nanomed. Nanotech. Biol. Med., 5 (2009), 64.10.1016/j.nano.2008.07.005
  14. [14] Yeniyol S., Bölükbaş N., Bilir A., Çakir A.F., Yeniyol M., Ozdemir T., ISRN Biomaterials, 2013 (2013), 783873.10.5402/2013/783873
  15. [15] Jokanović V., Čolović B., Nenadović M., Trajkovska Petkoska A., Mitrić M., Jokanović B., Nasov I., Adv. Mater. Sci. Eng., 2016 (2016), 4565493.10.1155/2016/4565493
  16. [16] Ching H.A., Choudhury D., Nine M.J., Azuan N., Osman A., Sci. Technol. Adv. Mater., 15 (2014), 014402.10.1088/1468-6996/15/1/014402
  17. [17] Wojcieszak D., Mazur M., Kaczmarek D., Poniedziałek A., Osekowska M., Mater. Sci.- Poland, 35 (2017), 421.10.1515/msp-2017-0041
  18. [18] Kelly P.J., Arnell R.D., Vacuum, 56 (2000), 159.10.1016/S0042-207X(99)00189-X
  19. [19] Jokanović V., Čolović B., Trajkovska Petkoska A., Mraković A., Jokanović B., Nenadović M., Ferrara M., Nasov I., Plasma Sci. Technol., 19 (2017), 125504.10.1088/2058-6272/aa8806
  20. [20] Watanabe D., Castles J.R., Jostsons A., Malin A.S., Acta Crystallogr., 23 (1967), 307.10.1107/S0365110X67002634
  21. [21] Legrand C., Delville J., C. R. Hebd. Seances Acad. Sci., 236 (1953), 944.
  22. [22] Quirama A., Echavarría A.M., Meza J.M., Osorio J., Bejarano G., Vacuum, 146 (2017), 22.10.1016/j.vacuum.2017.09.024
  23. [23] Sanches E., Lopez T., Gomez R., Bokhimi R., Morales A., Novaro O., J. Solid State Chem., 122 (1996), 309.10.1006/jssc.1996.0118
  24. [24] Jiang C.C., Goto T., Hira T., J. Alloy. Compd., 190 (1993), 197.10.1016/0925-8388(93)90399-8
  25. [25] Straumanis M.E., Li H.W., Z. Anorg. Allg. Chem., 305 (1960), 143.10.1002/zaac.19603050305
  26. [26] Viana B.C., Ferreira O.P., Filho A.G.S., Hidalgo A.A., Filho J.M., Alves O.L., Vib. Spectrosc., 55 (2011), 183.10.1016/j.vibspec.2010.11.007
  27. [27] Murashkevich A.N., Lavitskaya A.S., Barannikova T.I., Zharskii I.M., J. Appl. Spectrosc., 75 (2008), 730.10.1007/s10812-008-9097-3
  28. [28] Djaoued Y., Badilescu S., Ashrit P.V., Bersani D., Lottici P.P., Robichaud J., J. Sol-Gel Sci. Technol., 24 (2002), 255.10.1023/A:1015357313003
  29. [29] Kim I., Kumta P.N., Mat. Sci.Eng. B, 98 (2003), 123.10.1016/S0921-5107(02)00595-0
  30. [30] Schneider J., Matsuoka M., Takeuchi M., Zhang J., Horiuchi Y., Anpo M., Bahnemann D.W., Chem. Rev., 114 (2014), 9919.10.1021/cr500189225234429
  31. [31] Zhang K.X., Wang W., Hou J.L., Zhao J.H., Zhang Y., Fang Y.C., Vacuum, 85 (2011), 990.10.1016/j.vacuum.2011.02.006
  32. [32] Kuscer D., Kovac J., Kosec M., Andriesen R., J. Eur. Ceram. Soc., 28 (2008), 577.10.1016/j.jeurceramsoc.2007.07.014
DOI: https://doi.org/10.2478/msp-2019-0031 | Journal eISSN: 2083-134X | Journal ISSN: 2083-1331
Language: English
Page range: 173 - 181
Submitted on: Jan 25, 2018
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Accepted on: Mar 29, 2019
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Published on: Aug 2, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 Božana Čolović, Danilo Kisić, Bojan Jokanović, Zlatko Rakočević, Ilija Nasov, Anka Trajkovska Petkoska, Vukoman Jokanović, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.