引用本文:
刘榕芳, 肖秀峰. 羟基磷灰石/氧化锆复合涂层的水热电沉积及其性能[J]. 应用化学,
2006, 23(6): 612-616.
Citation: LIU Rong-Fang, XIAO Xiu-Feng. Hydrothermal Electrodeposition and Properties of Hydroxyapatite/Zirconia Composite Coatings[J]. Chinese Journal of Applied Chemistry, 2006, 23(6): 612-616.

Citation: LIU Rong-Fang, XIAO Xiu-Feng. Hydrothermal Electrodeposition and Properties of Hydroxyapatite/Zirconia Composite Coatings[J]. Chinese Journal of Applied Chemistry, 2006, 23(6): 612-616.

羟基磷灰石/氧化锆复合涂层的水热电沉积及其性能
摘要:
在水热电沉积羟基磷灰石(HA)涂层的电解液中加入ZrO2粉,制备了HA/ZrO2复合涂层,探讨了ZrO2粉的加入对涂层结合强度和生物活性的影响,研究了涂层的热稳定性。结果表明,HA/ZrO2(ZrO2质量分数为35.22%)复合涂层的结合强度明显高于纯HA涂层的结合强度。模拟体溶液浸泡7 d后,复合涂层表面形成碳磷灰石层。ZrO2粉的加入既提高了涂层的结合强度,又不降低涂层的生物活性。经烧结处理后,涂层中四方晶相ZrO2(t-ZrO2)与单斜晶相ZrO2(m-ZrO2)之间发生马氏体相变。烧结温度高于700℃时,HA发生部分分解生成β-磷酸钙(β-TCP);1 200℃时,HA分解生成的CaO使ZrO2转变为立方晶相ZrO2(c-ZrO2),并反应生成CaZrO3,促使HA完全分解为α-磷酸钙(α-TCP)。
English
Hydrothermal Electrodeposition and Properties of Hydroxyapatite/Zirconia Composite Coatings
Abstract:
HA/ZrO2 composite coatings were successfully prepared on titanium electrode by means of the hydrothermal electrodeposition method via adding ZrO2 powder in the electrolyte in an autoclave.The bonding strength,bioactivity and thermal stability of the coatings were investigated.The results obtained show that the bonding strength of HA/ZrO2 composite coating is obviously higher than that of pure HA coating.HA/ZrO2 composite coating surfaces are covered by carbonate-apatite coating after immersion in simulate body fluid for 7 d,which indicates that the bonding strength of the coating is improved without the decrease of the bioactivity by the addition of the ZrO2 in HA coating.Tetragonal phase ZrO2(t-ZrO2) underwent a martensitic transformation to monoclinic phase ZrO2(m-ZrO2) after sintering treatment.At sintering temperature above 700℃,HA partially decomposed which causes the ZrO2 transformation to β-calcium phosphate(β-TCP).when sintering at 1 200℃,HA decomposed to α-calcium phosphate(α-TCP) and gave CaO,cubic phases ZrO2 (c-ZrO2) and yields CaZrO3.
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Key words:
- hydrothermal electrodeposition
- / hydroxyapatite
- / ZrO2
- / bonding strength
- / bioactivity
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