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Characterization of Porous TiO2 Surfaces Formed on 316L Stainless Steel by Plasma Electrolytic Oxidation for Stent Applications

机译:316L不锈钢上等离子电解氧化在支架上形成的多孔TiO2表面的特性

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摘要

In this study, a porous oxide layer was formed on the surface of 316L stainless steel (SS) by combining Ti magnetron sputtering and plasma electrolytic oxidation (PEO) with the aim to produce a polymer-free drug carrier for drug eluting stent (DES) applications. The oxidation was performed galvanostatically in Na3PO4 electrolyte. The surface porosity, average pore size and roughness varied with PEO treatment duration, and under optimum conditions, the surface showed a porosity of 7.43%, an average pore size of 0.44 µm and a roughness (Ra) of 0.34 µm. The EDS analyses revealed that the porous layer consisted of Ti, O and P. The cross-sectional morphology evidenced a double-layer structure, with a porous titania surface and an un-oxidized dense Ti film towards the interface with 316L SS. After the PEO treatment, wettability and surface free energy increased significantly. The results of the present study confirm the feasibility of forming a porous TiO2 layer on stainless steel by combining sputtering technology and PEO. Further, the resultant porous oxide layer has the potential to be used as a drug carrier for DES, thus avoiding the complications associated with the polymer based carriers.
机译:在这项研究中,通过结合Ti磁控溅射和等离子电解氧化(PEO)在316L不锈钢(SS)的表面上形成多孔氧化层,目的是生产用于药物洗脱支架(DES)的不含聚合物的药物载体应用程序。在Na3PO4电解质中进行恒电流氧化。表面孔隙率,平均孔径和粗糙度随PEO处理时间而变化,在最佳条件下,表面孔隙率为7.43%,平均孔径为0.44 µm,粗糙度(Ra)为0.34 µm。 EDS分析表明,多孔层由Ti,O和P组成。横截面形态表明是双层结构,具有多孔的二氧化钛表面和朝向与316L SS界面的未氧化的致密Ti膜。经过PEO处理后,润湿性和表面自由能显着提高。本研究的结果证实了通过结合溅射技术和PEO在不锈钢上形成多孔TiO2层的可行性。此外,所得的多孔氧化物层具有用作DES的药物载体的潜力,因此避免了与基于聚合物的载体相关的复杂性。

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