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Effects of ultrasonic treatment and current density on the properties of hydroxyapatite coating via electrodeposition and its in vitro biomineralization behavior

机译:超声处理和电流密度对电沉积的羟基磷灰石涂层性能及其体外生物矿化行为的影响

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In this study, ultrasonic-assisted electrodeposition is used to prepare uniform and smooth hydroxyapatite (HA) coating on the surface of the braids, which can be potentially applied as biodegradable bone scaffolds. During the electro-deposition process, the ultrasonic power (0 W and 20 W) and current density (2.5, 5.0, and 7.5 mA/cm(2)) are altered in order to evaluate their influences on the properties of HA coating over the braid surface. The field emission scanning electron microscope (FE-SEM) images show that the crystals growth stages of HA include spherical particles, plate-like and needle-like crystals when electro-deposited for 15, 30, 45, and 60 min. In particular, when electro-deposited for 60 min, the needle-like structure of HA coatings shows a significant increase in density as a result of increasing the current density or the employment of ultrasonic treatment. Transmission electron microscope (TEM) results show that when the current density increases from 2.5 mA/cm(2) to 7.5 mA/cm(2), the grain size decreases from 413.65 +/- 63.12 nm to 264.56 +/- 65.33 nm. With the aid of ultrasonic treatment, the HA coating demonstrates a calcium-phosphorus (Ca/P) ratio that resembles that of the human skeleton being 1.67. The X-ray Diffraction (XRD) results show the highest crystallinity reaches 73.52% at 7.5 mA/cm(2)-20 W. The cavitation effect of ultrasonic can improve the roughness of HA coating distinctively. Finally, the 7-day immersion into simulated body fluid (SBF) demonstrated a denser and finer apatite precipitation on the HA coating fabricated by ultrasonic-assisted electrodeposition. Therefore, this study provides a feasible ultrasonic-assisted electrodeposition method that yields a good morphology of bioactive substances coating over braid or other rugged deposition substrate for potential degradable bone scaffolds.
机译:在该研究中,超声波辅助电沉积用于制备均匀且光滑的羟基磷灰石(HA)涂层在编织物的表面上,这可能被视为可生物降解的骨支架。在电沉积过程中,改变超声波功率(0W和20 W)和电流密度(2.5,5.0和7.5mA / cm(2)),以评估它们对HA涂层的性质的影响辫子表面。现场发射扫描电子显微镜(Fe-SEM)图像显示HA的晶体生长阶段包括当电沉积15,30,45和60分钟时的球形颗粒,板状和针状晶体。特别地,当电沉积60分钟时,HA涂层的针状结构由于增加电流密度或超声处理而产生的密度显着增加。透射电子显微镜(TEM)结果表明,当电流密度从2.5 mA / cm(2)增加至7.5 mA / cm(2)时,晶粒尺寸从413.65 +/- 63.12nm降至264.56 +/- 65.33mm。借助于超声处理,HA涂层显示了类似于人骨架的钙 - 磷(Ca / P)比为1.67。 X射线衍射(XRD)结果显示最高结晶度达到73.52%,在7.5 mA / cm(2)-20W中达到73.52%。超声波的空化效果可提高HA涂层的粗糙度。最后,将7天浸入模拟体液(SBF)中,在通过超声波辅助电沉积的HA涂层上表现出密集和更精细的磷灰石沉淀。因此,该研究提供了一种可行的超声波辅助电沉积方法,其在编织物或其他坚固耐沉积基板上产生良好的生物活性物质形态,用于潜在可降解的骨支架。

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