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Surface modification of titanium by etching in concentrated sulfuric acid

机译:通过在浓硫酸中蚀刻对钛进行表面改性

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Objective. The purpose of this study was to characterize the etching behavior of titanium in concentrated sulfuric acid and discuss its application on surface modification of titanium for biological use. Methods. Commercially pure titanium (cpTi) plate was etched in 48% H_2SO_4 at RT -90℃ for 0.25-8 h. The weight loss was derived from the weight differences before and after etching. The surfaces after etching were characterized by surface roughness, X-ray diffractometry, and scannning electron spectroscopy. The apparent activation energy of the dissolution of cpTi into acid was derived from an Arrhenius plot of the rate of weight loss versus the acid temperature. Results. The surface roughness of cpTi increased with the acid temperature and etching time. The surface roughness was strongly related to the weight loss. The weight loss increased drastically with the acid temperature after an initial period, which shortened with increasing acid temperature. The apparent activation energy for the dissolution of cpTi in H_2SO_4 was derived as 67.8 kJ/mol. Significance. This study indicates that etching with concentrated sulfuric acid is an effective way to modify the surface of titanium for biological applications.
机译:目的。这项研究的目的是表征浓硫酸中钛的蚀刻行为,并讨论其在钛表面改性中的应用。方法。将商用纯钛(cpTi)板在48%H_2SO_4中于RT -90℃蚀刻0.25-8 h。重量损失源自蚀刻前后的重量差。蚀刻后的表面通过表面粗糙度,X射线衍射和扫描电子光谱来表征。 cpTi溶解在酸中的表观活化能来自失重速率与酸温度的Arrhenius图。结果。 cpTi的表面粗糙度随着酸温度和蚀刻时间的增加而增加。表面粗糙度与重量损失密切相关。在初始阶段之后,重量损失随着酸温度急剧增加,随着酸温度的升高而缩短。 cpTi溶解在H_2SO_4中的表观活化能为67.8 kJ / mol。意义。这项研究表明,用浓硫酸蚀刻是用于生物应用的钛表面改性的有效方法。

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