Download Hydroxyapatite coatings for biomedical applications by Sam Zhang PDF

By Sam Zhang

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2, R17–R23 (2007). Eliaz, N. and. T. M. Sridhar. Electrocrystallization of hydroxyapatite and its dependence on solution conditions. Cryst Growth Des 8, 3965–3977 (2008). , Kim, K. , and Ong, J. L. A review on calcium phosphate coatings produced using a sputtering process—An alternative to plasma spraying. Biomaterials 26, 327–337 (2005). 16. , Dubey, A. , and Basu, B. Cellular proliferation, cellular viability, and biocompatibility of HA-ZnO composites. J Biomed Mater Res B Appl Biomater. 100, 256–264 (2012).

5. Geesink, R. , and Klein, C. P. Bonding of bone to apatite-coated implants. J Bone Joint Surg Br. 70, 17–22 (1988). Geesink, R. G. T. Osteoconductive coatings for total joint arthroplasty. Clin Orthop Relat Res. 460, 53–65 (2002). Havelin, L. The Norwegian Arthroplasty Register: 11 years and 73,000 arthroplasties. Acta Orthop Scand 71. 73, 337–353 (2000). , Carnes, D. , and Ong, J. L. In vivo evaluation of hydroxyapatite coatings of different crystallinities. Int J Oral Maxillofac Implants.

They attempted EPD of various kinds of CaP ceramics, including commercially available HA particles, HA particles prepared by a precipitation method, β-calcium phosphate (β-TCP) particles, or HA–TCP particles. The CaP ceramic particles were suspended in isopropanol, and an electric field was applied between the lead anode and the cathode made of Ti metal or its alloys. After EPD, calcination was performed under various conditions. It was found that EPD coupled with calcination has a remarkable effect on the composition and crystalline phase of the deposited layer.

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