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Pulsed Electron Deposition of nanostructured bioactive glass coatings for biomedical applications

机译:用于生物医学应用的纳米结构生物活性玻璃涂层的脉冲电子沉积

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摘要

Due to poor mechanical properties and brittleness of bioactive glasses, the deposition of bioactive glass coatings on bioinert metallic implants for bone regeneration is a promising route to combine the high bioactivity of the glassy phase with the mechanical strength of metallic substrate. The Pulsed Electron Deposition (PED) technique has been recently demonstrated to be an effective method to fabricate highly-adherent and nanostructured bioactive thin films and coatings, with fine control over film composition. In this paper, we investigated the deposition by PED of 45S5 Bioglass and of a novel CaO-rich bioactive glass, also containing potassium oxide. Composition, microstructure, surface morphology, wettability and adhesion to the titanium substrate were assessed for both as-deposited and annealed coatings. All samples exhibited a nanostructured surface morphology and high hydrophilicity, both positive features for biological applications. In particular, annealed samples exhibited increased roughness and adhesion degree to the titanium substrate compared to the as-deposited ones. The results showed in this paper suggest that bioactive glass coatings deposited by PED are promising for being further investigated as bioactive coatings for bone implants.
机译:由于生物活性玻璃的机械性能差,生物活性玻璃涂层对骨再生的生物活性玻璃涂层的沉积是将玻璃相的高生物活性与金属基材的机械强度结合起来的有希望的途径。最近已经证明脉冲电子沉积(PED)技术是制造高度粘附和纳米结构的生物活性薄膜和涂层的有效方法,具有微量对薄膜组合物的微量控制。在本文中,我们研究了45S5生物制剂的PED沉积,并含有一种含有氧化钾的新型富含CaO的生物活性玻璃。评估组成,微观结构,表面形态,润湿性和对钛基底的粘附,对沉积的和退火涂料进行评估。所有样品均显示出纳米结构的表面形态和高亲水性,用于生物应用的阳性特征。特别地,与沉积的样品表现出增加的粗糙度和粘附程度,与沉积的样品相比,钛基底具有增加的粗糙度和粘附程度。本文表明的结果表明,PED沉积的生物活性玻璃涂层是有望进一步研究的骨植入物的生物活性涂层。

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