Electrochemical Modifications of Titanium and Titanium Alloys Surface for Biomedical Applications – a Review
Keywords:
titanium, titanium alloy, electrodeposition, anodic oxidation
Abstract
The field of biomaterials requires the input of knowledge from very different areas such as biology, medicine and engineering so that the implanted material in a living body to not induce any adverse impacts. The paper focuses its attention mainly on titanium and titanium alloys, even though there are biomaterials manufactured from other metals, ceramics, polymers and composite materials. Both electrodeposition and anodic oxidation surface modification methods are discussed with several examples and a brief description of underlying theory, in order to improve the mechanical, chemical and biological properties of these materials.
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References
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[67]. R. Narayanan, P. Mukherjee, S.K. Seshadri - J. Mater. Sci.-Mater. M. 18, 779 (2007).
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[69]. I. Zhitomirsky, L. Gal-Or - J. Mater. Sci.-Mater. M. 8, 213 (1997).
[70]. M. Wei, A.J. Ruys, B.K. Milthorpe, C.C. Sorrell, J.H. Evans - J. Sol-Gel Sci. Techn. 21, 39 (2001).
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[73]. S. Miao, W. Weng, Z. Li, K. Cheng, P. Du, G. Shen, G. Han - J. Mater. Sci.-Mater. M. 20, 131 (2009).
[74]. P. Kern, P. Schwaller, J. Michler - Thin Solid Films 494, 279 (2006).
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[77]. Y. Cai, R. Tang - J. Mater. Chem. 18, 3775 (2008).
[78]. Q. Yuan, T.D. Golden - Thin Solid Films 518, 55 (2009).
[79]. Y.W. Song, D.Y. Shan, E.H. Han - Mater. Lett. 62, 3276 (2008).
[80]. Y.-Y. Zhang, J. Tao, Y.-C. Pang, W. Wang, T. Wang - Trans. Nonferrous Met. Soc. China 16, 633 (2006).
[81]. N. Dumelie, H. Benhayoune, D. Richard, D. LaurentMaquin, G. Balossier - Mater. Charact. 59, 129 (2008).
[82]. Y.-Q. Wang, J. Tao, L. Wang, P.-T. He, T. Wang - Trans. Nonferrous Met. Soc. China 18, 631 (2008).
[83]. D.J. Blackwood, K.H.W. Seah - Mater. Sci. Eng. C 29, 1233 (2009).
[84]. N. Eliaz, T. M. Sridhar - Crystal Growth & Design 8, 3965 (2008).
[85]. X. Zhao, L. Yang, Y. Zuo, J. Xiong - Chinese J. Chem. Eng. 17, 667 (2009).
[86]. N. Eliaz, M. Eliyahu - J. Biomed. Mater. 80A, 621 (2007).
[87]. X. Cheng, M. Filiaggi, S.G. Roscoe - Biomaterials 25, 5395 (2004).
[88]. R. Narayanan, S.K. Seshadri - J. Appl. Electrochem. 36, 475 (2006).
[89]. D. Velten, V. Biehl, F. Aubertin, B. Valeske, W. Possart, J. Breme - J. Biomed. Mater. Res. 59, 18 (2002).
[90]. E. Krasicka-Cydzik, K. Kowalski, I. Glazowska - Journal of Achievements in Materials and Manufacturing Engineering, 18, 147 (2006).
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[95]. J. Kunze, L. Müller, J.M. Macak, P. Greil, P. Schmuki, F.A. Müller - Electrochim. Acta. 53, 6995 (2008).
[96]. H.Z. Abdullah, C.C. Sorrell - J. Aust. Ceram. Soc. 43, 125 (2007).
[97]. A. Karambakhsh, A. Afshar, P. Malekinejad - J. Mater. Eng. Perform. 19, 1 (2010).
[98]. Y.-T. Sul, C.B. Johansson, Y. Jeong, T. Albrektsson - Med. Eng. Phys. 23, 329 (2001).
[99]. M.V. Diamanti, M. Ormellese, M.P. Pedeferri - Corros. Sci. 52, 1824 (2010).
[100]. B. Yang, M. Uchida, H.-M. Kim, X. Zhang, T. Kokubo - Biomaterials 25, 1003 (2004).
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Published
2013-03-15
How to Cite
1.
MARDARE E, BENEA L, BOUNEGRU I. Electrochemical Modifications of Titanium and Titanium Alloys Surface for Biomedical Applications – a Review. The Annals of “Dunarea de Jos” University of Galati. Fascicle IX, Metallurgy and Materials Science [Internet]. 15Mar.2013 [cited 25Dec.2024];36(1):68-. Available from: https://gup.ugal.ro/ugaljournals/index.php/mms/article/view/2855
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