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Deposition of Ultrathin Nano-Hydroxyapatite Films on Laser Micro-Textured Titanium Surfaces to Prepare a Multiscale Surface Topography for Improved Surface Wettability/Energy

机译:在激光微织构的钛表面上沉积超薄纳米羟基磷灰石薄膜以制备用于改善表面润湿性/能量的多尺度表面形貌

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摘要

The primary aim of this study was to analyse the correlation between topographical features and chemical composition with the changes in wettability and the surface free energy of microstructured titanium (Ti) surfaces. Periodic microscale structures on the surface of Ti substrates were fabricated via direct laser interference patterning (DLIP). Radio-frequency magnetron sputter deposition of ultrathin nanostructured hydroxyapatite (HA) films was used to form an additional nanoscale grain morphology on the microscale-structured Ti surfaces to generate multiscale surface structures. The surface characteristics were evaluated using atomic force microscopy and contact angle and surface free energy measurements. The structure and phase composition of the HA films were investigated using X-ray diffraction. The HA-coated periodic microscale structured Ti substrates exhibited a significantly lower water contact angle and a larger surface free energy compared with the uncoated Ti substrates. Control over the wettability and surface free energy was achieved using Ti substrates structured via the DLIP technique followed by the deposition of a nanostructured HA coating, which resulted in the changes in surface chemistry and the formation of multiscale surface topography on the nano- and microscale.
机译:这项研究的主要目的是分析形貌特征与化学成分之间的相关性,以及微结构化钛(Ti)表面的润湿性和表面自由能的变化。通过直接激光干涉图案化(DLIP)在Ti衬底表面上形成周期性的微米级结构。超薄纳米结构羟基磷灰石(HA)膜的射频磁控溅射沉积用于在微尺度结构的Ti表面上形成额外的纳米尺度晶粒形态,以产生多尺度的表面结构。使用原子力显微镜以及接触角和表面自由能测量来评估表面特性。使用X射线衍射研究了HA膜的结构和相组成。与未涂覆的Ti衬底相比,HA涂覆的周期性的微米级结构化的Ti衬底表现出明显更低的水接触角和更大的表面自由能。使用通过DLIP技术构造的Ti基材,然后沉积纳米结构的HA涂层,实现了对润湿性和表面自由能的控制,这导致了表面化学的变化以及纳米级和微米级多尺度表面形貌的形成。

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