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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Tailoring the synthesis of tantalum-based thin films for biomedical application: Characterization and biological response
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Tailoring the synthesis of tantalum-based thin films for biomedical application: Characterization and biological response

机译:为生物医学应用定制钽基薄膜的合成:表征和生物反应

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摘要

The aim of this study was to tailor the deposition parameters of magnetron sputtering to synthetize tantalum oxide (TaxOy) films onto commercially pure titanium (cpTi) surface. The structural and optical properties, morphology, roughness, elemental chemical composition and surface energy were assessed. The impact of TaxOy films on initial Streptococcus sanguinis adhesion was investigated. The morphology and spreading of pre-osteoblastic (MC3T3-E1) cells on a crystalline tantalum oxide film were evaluated. TaxOy films with estimated thickness of 600 nm and different structures (amorphous or crystalline) were produced depending on the various oxygen flow rates and parameters used. X-ray diffraction analysis revealed that the 8 O-2 sccm (600 degrees C/400 W) group showed crystallization corresponding to the beta-TaxO5 phase. Optical analysis showed that the 4 O-2 sccm (200 degrees C 300 W) to 8 O-2 sccm (600 degrees C 300 W) groups and 10 O-2 sccm (200 degrees C 300 W) group presented regular and large-amplitude interference oscillations, suggesting high optical homogeneity of the films. The crystalline beta-TaxO5 coating showed higher roughness and surface energy values than the other groups (P < .05) and was biocompatible. Compared with cpTi, the amorphous and crystalline tantalum oxide films did not increase bacterial adhesion (P > .05). By tailoring the deposition parameters, we synthetized a crystalline beta-TaxO5 coating that improved titanium surface properties and positively affected cell spreading and morphology, making it a promising surface treatment for titanium-based implants.
机译:本研究的目的是根据商业上纯钛(CPTI)表面来定制磁控溅射的沉积参数以合成氧化钽膜(鸡蛋)薄膜。评估结构和光学性质,形态,粗糙度,元素化学成分和表面能。研究了罗豆膜对初始链球菌的影响。评价了在结晶钽氧化物膜上预骨细胞(MC3T3-E1)细胞的形态和扩散。根据所使用的各种氧气流速和参数,产生估计厚度为600nm和不同结构(无定形或结晶)的罗克浴薄膜。 X射线衍射分析显示,8 o-2 sccm(600℃/ 400 w)组显示与β-税收5相对应的结晶。光学分析表明,4 o-2 sccm(200℃300 w)至8 o-2 sccm(600℃300 w)组和10 o-2 sccm(200摄氏度300 w)组常规和大幅度干扰振荡,表明薄膜的高光学均匀性。结晶β-税收5涂层显示比其他基团更高的粗糙度和表面能值(P <.05)并生物相容性。与CPTI相比,无定形和结晶钽氧化物薄膜未增加细菌粘附(P> .05)。通过剪裁沉积参数,我们合成了结晶β-税收5涂层,可改善钛表面性质和积极影响的细胞扩散和形态,使其成为钛基植入物的有希望的表面处理。

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