2002
DOI: 10.1016/s0928-4931(02)00026-7
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The process of electrochemical deposited hydroxyapatite coatings on biomedical titanium at room temperature

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Cited by 301 publications
(152 citation statements)
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“…However, the Ca-def HA coating delayed the decrease in strength of the Mg alloy, which would be helpful in supporting the fractured bone for a longer time. Moreover, the mechanical properties of the coated Mg alloy were similar to those of the substrate when tested in air (Kuo & Yen, 2002). …”
Section: Pulsed Electrochemical Depositionmentioning
confidence: 68%
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“…However, the Ca-def HA coating delayed the decrease in strength of the Mg alloy, which would be helpful in supporting the fractured bone for a longer time. Moreover, the mechanical properties of the coated Mg alloy were similar to those of the substrate when tested in air (Kuo & Yen, 2002). …”
Section: Pulsed Electrochemical Depositionmentioning
confidence: 68%
“…Due to the chemical and structural similarities to bone and tooth minerals (H. W. Denissen et.al. 1980), HA had excellent biocompatibility and bioactivity and was used to improve the surface biocompatibility of Ti, Mg and stainless steel alloys (Wang, et al, 2010;Kuo, et al, 2002). OCP, as a calcium phosphate, had been suggested to be a precursor of biological apatite in bone (Brown, et al, 1962;Crane, et al, 2006).…”
Section: Micro-arc Oxidation (Mao)/ Electrochemical Deposition (Ed) Cmentioning
confidence: 99%
“…The HAp coating on CoCrMo metal implant with the thickness of 200 nm can hold the coating quality of around 17.5 MPa which has been considered as the base prerequisite for the minimum adhesion quality of HAp deposition on metallic biomaterials [65,66]. However, the HAp coated substrate was deposited at 10 mA/cm 2 and annealed for 1 h at 500°C showed the thickness of the coating is approximately 18.6 μm revealed stronger adhesion strength (106.3 MPa) of HAp coating [67]. The electrochemical deposition of HAp on metal substrates used common strategies to diminish their debasement; unfortunately, it contains abandon of it onto the coating surface [68].…”
Section: Electrochemical Depositionmentioning
confidence: 99%
“…Furthermore, multi-walled carbon nanotubes can be functionalized by deposition of calcium orthophosphate coatings [536]. The list of most important coating techniques is comprised in Table 5, while the main advantages and drawbacks of each coating technique, as well as the major properties of the deposed calcium orthophosphates, are discussed in details elsewhere [194,240,295,525,526,[537][538][539][540][541][542][543][544][545][546][547][548][549][550][551]. Unfortunately, none of these methods is able to provide the perfect covering because each coating always contains cracks, pores, second phases and residual stresses that reduced their durability and might lead to a partial or complete disintegration of the coating in body fluids.…”
Section: Coatingsmentioning
confidence: 99%