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首页> 外文期刊>Applied Surface Science >Surface engineering of nanostructured Ta surface with incorporation of osteoconductive elements by anodization
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Surface engineering of nanostructured Ta surface with incorporation of osteoconductive elements by anodization

机译:通过阳极氧化结合骨传导元素的纳米结构Ta表面的表面工程

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Surface modifications have been deeply investigated to improve their properties (nano-morphology/topography and chemistry), mainly to enhance surface bioactivity and consequently to overcome the current dental implants failures. For this purpose, the main goal of this work is to mimic the bone morphology as well as its chemical composition by the incorporation of calcium (Ca), phosphorus (P) and magnesium (Mg) on a tantalum (Ta) surface. Two approaches were used: reverse polarization (RP) and/or anodization, under different applied potential and acid-free electrolytes. It was observed that RP followed by anodization promoted the incorporation of cations (Ca2+, Mg2+ and Na+) in a competitive way. X-ray photoelectron spectroscopy (XPS) and X-ray diffraction (XRD) analyses showed formation of amorphous calcium phosphate compounds. Moreover, a surface enriched with Ca, P and Mg achieved a Ca/P ratio of 1.4 similar to the stoichiometric hydroxyapatite (1.67). The surfaces subsequently became rougher and hydrophilic with their biofunctionalization. All these surface features are good pointers towards a better implant osseointegration.
机译:已经对表面改性进行了深入研究,以改善其性能(纳米形态/形貌和化学性质),主要是为了增强表面生物活性,从而克服当前的牙科植入物故障。为此,这项工作的主要目标是通过在钽(Ta)表面上掺入钙(Ca),磷(P)和镁(Mg)来模拟骨骼的形态及其化学成分。使用了两种方法:在不同的施加电势下和无酸电解液下进行反极化(RP)和/或阳极氧化。观察到,随后进行阳极氧化的RP以竞争方式促进了阳离子(Ca2 +,Mg2 +和Na +)的结合。 X射线光电子能谱(XPS)和X射线衍射(XRD)分析显示了无定形磷酸钙化合物的形成。此外,与化学计量的羟基磷灰石(1.67)相似,富含Ca,P和Mg的表面的Ca / P比为1.4。随后,由于其生物功能化,表面变得更粗糙且具有亲水性。所有这些表面特征都是更好的植入物骨整合的良好指示。

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