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沉积参数和沉积后退火对电喷 TiO2 薄膜形貌和细胞反应的影响。

Effect of deposition parameters and post-deposition annealing on the morphology and cellular response of electrosprayed TiO2 films.

机构信息

Mechanical Engineering Department, University College London, Torrington Place, London WC1E 7JE, UK.

出版信息

Biofabrication. 2011 Dec;3(4):045001. doi: 10.1088/1758-5082/3/4/045001. Epub 2011 Aug 26.

Abstract

Titania films (TiO(2)) were deposited on Ti alloy substrates by electrohydrodynamic atomization (EHDA), also called electrospraying, and the morphology and phase composition of the coatings were evaluated. A range of TiO(2) sols (2-8 wt%) were prepared via the hydrolysis of polymeric precursors using isopropanol (prOH) as a solvent carrier. Stable cone-jet formation during the EHDA process was greatly influenced by varying the liquid physical properties. Deposition parameters such as sol concentration, needle-to-substrate distance and spray time were found to affect film morphology. Dense and continuous films were obtained under optimized conditions whereby a 2 wt% TiO(2) sol was atomized at a flow rate of 5 µl min(-1) by a needle of 300 µm inner diameter, kept at a distance of 20 mm from the grounded substrate and operating at an applied voltage of 3.5-4.2 kV. The films were then crystallized by heating to 300-600 °C. Annealing increased the hydrophilicity of the films but did not significantly affect the surface roughness of the films. In vitro cellular response was determined by studying the interaction between MG63 cells and the films annealed at the various temperatures. MG63 cells were able to grow and proliferate on all the TiO(2) films, while the highest proliferation rate was found on the TiO(2) films annealed at 600 °C. Our results indicate that electrosprayed TiO(2) films possess great potential for biomedical applications.

摘要

采用电喷射(也称为静电喷雾)的方法在 Ti 合金基底上沉积了 TiO2 薄膜,并对涂层的形貌和相组成进行了评估。通过使用异丙醇(prOH)作为溶剂载体,对聚合前体进行水解制备了一系列 TiO2 溶胶(2-8wt%)。在 EHDA 过程中,通过改变液体物理性质,可以极大地影响稳定的锥射流的形成。沉积参数,如溶胶浓度、针到基底的距离和喷涂时间,被发现会影响薄膜的形貌。在优化条件下可以获得致密且连续的薄膜,即 2wt%TiO2 溶胶以 5μl min(-1) 的流速通过 300μm 内径的针雾化,与接地基底保持 20mm 的距离,施加 3.5-4.2kV 的电压。然后将薄膜加热至 300-600°C 进行结晶。退火增加了薄膜的亲水性,但对薄膜的表面粗糙度没有显著影响。通过研究 MG63 细胞与在不同温度下退火的薄膜之间的相互作用,确定了体外细胞反应。MG63 细胞能够在所有 TiO2 薄膜上生长和增殖,而在 600°C 退火的 TiO2 薄膜上发现了最高的增殖率。我们的结果表明,电喷射的 TiO2 薄膜具有很大的生物医学应用潜力。

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