2012
DOI: 10.1016/j.materresbull.2012.07.014
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MAO-derived hydroxyapatite–TiO2 nanostructured bio-ceramic films on titanium

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Cited by 19 publications
(16 citation statements)
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“…et al, the growing layer has confirmed the structure of Hapat the range of 30 ~ 60 nm on commercially pure titanium surface via PEO at 350 V for 3 min[33,38].…”
mentioning
confidence: 74%
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“…et al, the growing layer has confirmed the structure of Hapat the range of 30 ~ 60 nm on commercially pure titanium surface via PEO at 350 V for 3 min[33,38].…”
mentioning
confidence: 74%
“…Most of the studies suspend Ti in the electrolytes, which contain calcium acetate and glycerophosphate or β-glycerophosphate to fabricate a bioceramic film such as HA and CA [33,[38][39][40][41][42]. Some studies have substituted the calcium acetate with calcium chloride [43] and trisodium phosphate [44].…”
Section: Accepted Manuscriptmentioning
confidence: 99%
“…Dependent on the growth time and electrolyte concentration, the pore sizes were in the range of 0.303-1.770 µm and amounting to 10.7%-17.3% of the studied surface. A layered model was proposed in which in the transition layer is located CaTiO 3 , responsible for adhesion of coating to the base, whereas α-TCP and HAp constitute the outer layer of coatings [132][133][134].…”
Section: Peo Coatings Enriched With Phosphorus and Calciummentioning
confidence: 99%
“…To overcome these problems, bioactive ceramics such as TiO 2 powders, which exhibit higher chemical stability compared with the apatite structure, were added to the matrix of the composite to improve the bioactivity and adherence of HA to the implant [9][10][11][12]. Amaravathy et al have also reported that TiO 2 /HA composite coatings on magnesium alloys produced using the sol-gel technique led to an increase in the corrosion resistance [9].…”
Section: Introductionmentioning
confidence: 99%