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Design of advanced one-step hydroxyapatite coatings for biomedical applications using the electrostatic spray deposition

机译:使用静电喷涂沉积设计生物医学应用的先进一步羟基磷灰石涂层

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摘要

Calcium phosphate ceramics (CaP), particularly hydroxyapatite Ca-10 (PO4)(6)(OH)(2) (HAP), are widely used as surface coatings on top of titanium and its alloys in biomedical applications thanks to their ability to form strong bonds with natural bone tissues. In this paper, the electrostatic spray deposition technique (ESD) by using an organic phosphorus (V) precursor is proposed as an alternative to the widely used plasma-spraying process. This bottom-up approach enables the one-step fabrication of single-phase crystalline HAP coatings with unique morphologies. The microstructure and composition of the deposited CaP layers result from a delicate compromise between the physicochemical properties of the precursor solution and the ESD deposition conditions. An indepth study of their structural, microstructural, compositional properties and their reactivity with Ti6Al4V is undertaken. It shows that the Ca/P molar ratio and the nature of phases are strongly dependent on hydrolysis and evaporation of the P(V) precursor in the ESD process. Optimized deposition conditions are found by using solvents of low-boiling point, for which the coatings deposited above 325 degrees C correspond to a well crystalline, nanostructured, and single-phase HAP. Infrared heat treatment of a coating prepared from the one optimized precursor solution promotes nanostructured HAP.
机译:磷酸钙陶瓷(帽),特别是羟基磷灰石Ca-10(PO4)(6)(6)(2)(2)(2)(Hap)被广泛用作钛及其在生物医学应用中的合金的表面涂层,因此由于其形成的能力具有天然骨组织的强键。在本文中,提出了通过使用有机磷(V)前体的静电喷射沉积技术(ESD)作为广泛使用的等离子体喷涂过程的替代方案。这种自下而上的方法使单相结晶HAP涂层的一步制造具有独特的形态。沉积帽层的微观结构和组成是由前体溶液的物理化学性质和ESD沉积条件之间的细腻折衷。进行了对其结构,微观结构,组成特性及其与Ti6Al4V的反应性的关注性研究。结果表明,Ca / P摩尔比和相的性质强烈依赖于ESD过程中P(v)前体的水解和蒸发。通过使用低沸点的溶剂来发现优化的沉积条件,其中沉积在325℃以上的涂层对应于孔结晶,纳米结构和单相Hap。由一种优化的前体溶液制备的涂层的红外热处理促进纳米结构Hap。

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