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Electrochemical behaviour of EPD synthesized graphene coating on titanium alloys for orthopedic implant application

机译:EPD合成石墨烯涂层对矫形植入物钛合金的电化学行为

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Titanium based alloys are one of the most popular biomedical materials and widely utilized as metallic implants; however, they often encounter failures resulted by the combined effects of wear and corrosion. Graphene, a single layer of carbon atoms arranged in an aromatic hexagonal lattice, is regarded as a potential promising coating material to settle this issue due to its impermeability, thermodynamic stability, transparency and flexibility. In this study, a layer of continuous graphene film is deposited on the surface of TC4 substrate by the electrophoretic deposition (EPD) method. The surface morphology and microstructure of the deposited graphene coatings are characterized by scanning electron microscopy and Raman spectroscopy; the corrosion behaviors of the fabricated graphene coated TC4, as well as the bare TC4 in 1.0 wt.% NaCl solution are investigated using an electrochemical workstation. The anti-corrosion properties were proven by potentiodynamic polarization curves (Tafel polarization curves). The open circuit potential (OCP) value of graphene coated TC4 is -0.01 V, compared with that of the bare TC4, which is measured as around -0.33 V; moreover, its corrosion current density dramatically reduces to the 40% of that of bare TC4. Further studies show that increasing the applied voltage orthe deposition duration of the EPD process would weaken the corrosion resistance of the deposited graphene coating, indicating that the protective nature of the coating would be impaired by intercrystallite pores and microdefects.
机译:钛合金是最受欢迎的生物医学材料之一,广泛用于金属植入物;然而,它们经常遇到失败,导致磨损和腐蚀的综合影响。石墨烯,在芳族六方晶格中布置的单层碳原子被认为是潜在的有效涂料,以解决由于其不透冰,热力学稳定性,透明度和柔韧性而定位。在该研究中,通过电泳沉积(EPD)方法将一层连续石墨烯膜沉积在TC4基板的表面上。沉积的石墨烯涂层的表面形态和微观结构通过扫描电子显微镜和拉曼光谱分析;使用电化学工作站研究了制造的石墨烯涂覆的TC4的腐蚀行为,以及1.0重量%的裸TC4.%NaCl溶液。通过电压极化曲线(Tafel偏振曲线)证明了抗腐蚀性能。与裸TC4相比,石墨烯涂覆的TC4的开路电位(OCP)值为-0.01V,其测量为约-0.33V;此外,其腐蚀电流密度显着降低到裸机TC4的40%。进一步的研究表明,增加EPD工艺的施加电压或沉积持续时间将削弱沉积的石墨烯涂层的耐腐蚀性,表明涂层的保护性是通过晶状体孔和微碎片损害的。

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