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CORROSION BEHAVIOR OF TRICALCIUM PHOSPHATE DOPED WITH DIFFERENT COMPOSITIONS OF SILVER

机译:掺杂不同组成银的磷酸三钙的腐蚀行为

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In this study, magnesium (Mg) disks were coated with β-tricalcium phosphate (β-TCP) doped with different mass percent of silver (Ag) (0 wt%, 1 wt%, 5 wt% and 10 wt%) in an effort to modulate the detrimental osteoimmunomodulatory properties and colonization of bacteria on Mg disk, due to the reported favorable osteoimmunomodulatory properties of β-TCP and antibacterial properties of Ag. This paper describes the growth, characterization and corrosion analyses of β-TCP doped with different compositions of Ag thin film coatings. The phase composition and microstructure analyses were performed using X-ray diffraction (XRD) and scanning electron microscopy (SEM) respectively. The SEM images showed that varying the percentage of Ag dopant affects the surface morphology of the β-TCP coatings. The corrosion protection behavior of the coated samples were evaluated using electrochemical measurement techniques, such as potentiodynamic polarization (PD) and electrochemical impedance spectroscopy (EIS). The corrosion tests were performed in Hank's Balanced salt solution using a three-electrode electrochemical cell. The results showed that the β-TCP coating and β-TCP doped with Ag coatings on the Mg disks exhibit a much superior stability and lower corrosion rate compared to bare Mg. It was observed that increasing the mass of the Ag dopant increases the corrosion protection, but 10 wt% Ag doping in β-TCP reduces the corrosion protection behavior. The SEM images of the samples after corrosion show that the P-TCP and β-TCP doped with 10 wt% Ag suffered the most corrosion attack compare to β-TCP doped with 1 wt% and 5 wt% Ag. In conclusion, we have developed β-TCP and β-TCP doped with 1 wt%, 5 wt% and 10 wt% Ag coating with tunable corrosion protection efficiency above 88%.
机译:在本研究中,涂覆镁(Mg)盘用掺杂有不同质量百分比的银(Ag)(0wt%,1wt%,5wt%和10wt%)的β-三钙(β-TCP)。由于据报道的β-TCP的良好骨切割性能和Ag的抗菌性能,因此努力调节Mg盘上的细菌的细菌结肠化。本文描述了β-TCP掺杂有不同组成的Ag薄膜涂层的生长,表征和腐蚀分析。使用X射线衍射(XRD)和扫描电子显微镜(SEM)进行相组合物和微观结构分析。 SEM图像显示,改变Ag掺杂剂的百分比影响β-TCP涂层的表面形态。使用电化学测量技术评估涂覆样品的腐蚀保护行为,例如电位偏振(PD)和电化学阻抗光谱(EIS)。使用三极电化学电池在Hank的平衡盐溶液中进行腐蚀试验。结果表明,与裸锰相比,β-TCP涂层和掺杂有Ag涂层的Ag涂层具有非常优异的稳定性和较低的腐蚀速率。观察到,增加Ag掺杂剂的质量增加了腐蚀保护,但β-TCP中的10wt%Ag掺杂可降低腐蚀保护行为。腐蚀后样品的SEM图像表明,掺杂10wt%Ag的P-TCP和β-TCP最多腐蚀攻击与β-TCP掺杂有1wt%和5wt%Ag。总之,我们开发了β-TCP和β-TCP,掺杂1wt%,5wt%和10wt%的Ag涂层,可调腐蚀保护效率高于88%。

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