2018
DOI: 10.1166/jnn.2018.14997
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A Simulated Body Fluid Evaluation of TiO2 Barrier Oxide Layer Formed by Electrochemical Reaction

Abstract: The modified surface during implantation is considered to be an effective strategy to improve high adhesion of bone cell and osseointegration activity. In this paper, the TiO2 barrier oxide Layer has been fabricated by using the ion characteristic of an electrolytic solution, the surface characteristics have been investigated by EDS, XPS, and FE-SEM. From the analysis of the chemical states, phosphorus and calcium were observed in the TiO2 barrier layer, which were penetrated from the electrolyte into the oxid… Show more

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“…The added advantage of H 2 O 2 significantly improves the coating properties as evidenced by the decreased formation of H 2 bubbles. As an alternative to solvated ionic Ca 2+ and PO 4 3precursors, the possibility of employing dispersed HAp nanoparticles were explored under simultaneous anodization-electrodeposition technique resulting in nanospherical deposits 242,243 . Furthermore, the deposition of HAp nanoslabs/nanoplates onto Ti plate is reported wherein HAp nanoslabs were synthesized prior to dispersal in deposition electrolyte 244 crystallinity and uniformity 120,245 .…”
Section: Discussionmentioning
confidence: 99%
See 1 more Smart Citation
“…The added advantage of H 2 O 2 significantly improves the coating properties as evidenced by the decreased formation of H 2 bubbles. As an alternative to solvated ionic Ca 2+ and PO 4 3precursors, the possibility of employing dispersed HAp nanoparticles were explored under simultaneous anodization-electrodeposition technique resulting in nanospherical deposits 242,243 . Furthermore, the deposition of HAp nanoslabs/nanoplates onto Ti plate is reported wherein HAp nanoslabs were synthesized prior to dispersal in deposition electrolyte 244 crystallinity and uniformity 120,245 .…”
Section: Discussionmentioning
confidence: 99%
“…As an alternative to solvated ionic Ca 2+ and PO 4 3À precursors, the possibility of employing dispersed HAp nanoparticles was explored under the simultaneous anodization-electrodeposition technique resulting in nanospherical deposits. 242,243 Furthermore, the deposition of HAp nanoslabs/nanoplates onto a Ti plate is reported wherein HAp nanoslabs were synthesized prior to dispersal in a deposition electrolyte. 244 The technique of simultaneous precipitation-electrodeposition proved fruitful in the preferential c-axis growth of acicular HAp with improved crystallinity and uniformity.…”
Section: Discussionmentioning
confidence: 99%