Malisz Klaudia, Świeczko-Żurek Beata, Olive Jean-Marc, Gajowiec Grzegorz, Pecastaings Gilles, Laska Aleksandra, Sionkowska Alina
Department of Biomaterials Technology, Faculty of Mechanical Engineering and Ship Technology, Gdansk University of Technology, Gabriela Narutowicza 11/12, 80-229 Gdansk, Poland.
CNRS-Centre National de la Recherche Scientifique, Institute de Mecanique et d'Imgenierie, Universite de Bordeaux, 33405 Talence, France.
Materials (Basel). 2024 May 10;17(10):2242. doi: 10.3390/ma17102242.
The aim of the work is to compare the properties of nanohydroxyapatite coatings obtained using the electrophoretic deposition method (EDP) at 10 V, 20 V, and 30 V, and with deposit times of 2 and 5 min. The primary sedimentation was used to minimize the risk of the formation of particle agglomerates on the sample surface. Evaluation of the coating was performed by using a Scanning Electron Microscope (SEM), Energy-Dispersive Spectroscopy (EDS), Atomic Force Microscopy (AFM), optical profilometer, drop shape analyzer, and a nanoscratch tester. All of the coatings are homogeneous without any agglomerates. When low voltage (10 V) was used, the coatings were uniform and continuous regardless of the deposition time. The increase in voltage resulted in the formation of cracks in the coatings. The wettability test shows the hydrophilic behavior of the coatings and the mean contact angle values are in the range of 20-37°. The coatings showed excellent adhesion to the substrate. The application of a maximum force of 400 mN did not cause delamination in most coatings. It is concluded that the optimal coating for orthopedic implants (such as hip joint implants, knee joint implants or facial elements) is obtained at 10 V and 5 min because of its homogeneity, and a contact angle that promotes osseointegration and great adhesion to the substrate.
这项工作的目的是比较使用电泳沉积法(EDP)在10V、20V和30V电压下,沉积时间为2分钟和5分钟时获得的纳米羟基磷灰石涂层的性能。采用初级沉降法以尽量降低样品表面形成颗粒团聚体的风险。通过扫描电子显微镜(SEM)、能谱仪(EDS)、原子力显微镜(AFM)、光学轮廓仪、滴形分析仪和纳米划痕测试仪对涂层进行评估。所有涂层均均匀且无任何团聚体。当使用低电压(10V)时,无论沉积时间如何,涂层都是均匀且连续的。电压升高导致涂层中出现裂纹。润湿性测试表明涂层具有亲水性,平均接触角值在20 - 37°范围内。涂层对基材表现出优异的附着力。在大多数涂层中,施加400mN的最大力不会导致分层。得出的结论是,对于骨科植入物(如髋关节植入物、膝关节植入物或面部元件)而言,由于其均匀性、促进骨整合的接触角以及对基材的良好附着力,在10V和5分钟时获得的涂层是最佳的。