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The effect of magnetic field on electrochemically deposited calcium phosphate/collagen coatings

机译:磁场对电化学沉积的磷酸钙/胶原涂层的影响

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Nanostructured calcium phosphate/collagen (CaP/COL) coatings were deposited on the carbon/carbon (C/C) composites through electrochemical deposition (ECD) under magnetic field. The effect of magnetic fields with different orientations on the morphology and composition was investigated. Both the morphology and composition of the coatings could be altered by superimposed magnetic field. Under zero magnetic field and magnetic field, three-dimensional network structure consisting of collagen fibers and CaP were formed on the C/C substrate. The applied magnetic field in the electric field helped to form nanostructured and plate-like CaP on collagen fibers. For the ECD under magnetic field, the Ca/P molar ratio of the coatings was lower than the one under B=0. This may be contributed to the decreased electrical resistance or the increased electrical conductivity of electrolyte solutions under magnetic field. The nanosized CaP/COL coatings exhibited the similar morphology to the human bone and could present excellent cell bioactivity and osteoblast functions.
机译:在磁场下通过电化学沉积(ECD)将纳米结构的磷酸钙/胶原(CaP / COL)涂层沉积在碳/碳(C / C)复合材料上。研究了不同方向的磁场对形态和组成的影响。涂层的形态和组成均可通过叠加磁场来改变。在零磁场和磁场作用下,C / C基板上形成了由胶原纤维和CaP组成的三维网络结构。电场中施加的磁场有助于在胶原纤维上形成纳米结构的片状CaP。对于在磁场下的ECD,涂层的Ca / P摩尔比低于B = 0时的Ca / P摩尔比。这可能导致磁场下电解质溶液的电阻降低或电导率升高。纳米CaP / COL涂层表现出与人类骨骼相似的形态,并具有出色的细胞生物活性和成骨细胞功能。

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