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首页> 外文期刊>Journal of Materials Science >Recent advances in multifunctional hydroxyapatite coating by electrochemical deposition
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Recent advances in multifunctional hydroxyapatite coating by electrochemical deposition

机译:电化学沉积近期多官能磷灰石涂层的预期

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摘要

Bio-ceramic hydroxyapatite (HA) coating has been commonly used to repair the bones or as the functionalized surface of bone substitutes due to its excellent biocompatibility, superior osteo-inductivity, and great corrosion resistance. Among many other methods for synthesizing HA coating, coating via the electrochemical deposition has a high degree of crystallinity and purity, which fits the nonlinear, complex, and rugged substrates. Furthermore, HA coating can be adjusted in terms of coating morphology, thickness, and chemical component via changing the parameters, such as electrolyte ion concentration, electrolyte composition, deposition current density, and deposition time, etc. Nevertheless, the properties of electrodeposited HA coating highly pertain to the bubbles generated by water electrolysis on the substrate surface as well as the concentration polarization of electrolyte ions near the cathode during the electrodeposition process. In this study, the critical factors and mechanisms of HA coating using the electrochemical deposition method are comprehensively evaluated, thereby examining the effects of parameter optimization (i.e., current mode, ultrasonic treatment, and postprocessing). Finally, the influences of ion substitution and HA composite coating on the surface structure and properties of the HA-based coatings are also discussed.
机译:生物陶瓷羟基磷灰石(HA)涂层通常用于修复骨骼或由于其优异的生物相容性,优异的骨磁性电感和耐腐蚀性而成为骨代替的官能化表面。在合成HA涂层的许多其他方法中,通过电化学沉积涂覆具有高度的结晶度和纯度,其适合非线性,复合物和粗糙的基材。此外,通过改变电解质离子浓度,电解质组合物,沉积电流密度和沉积时间等,可以在涂覆形态,厚度和化学成分方面调整HA涂层。尽管如此,电沉积HA涂层的性质高度涉及在电沉积工艺期间通过水电解在基板表面上产生的气泡产生的气泡以及阴极附近的电解质离子的浓度极化。在本研究中,综合评估了使用电化学沉积方法的HA涂层的关键因素和机制,从而检查参数优化的影响(即电流模式,超声处理和后处理)。最后,还讨论了离子取代和HA复合涂层对HA基涂层的表面结构和性质的影响。

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