共 17 条
Enhancement of Hydrophilicity of Nano-Pitted TiO2 Surface Using Phosphoric Acid Etching
被引:2
作者:
Koppany, Ferenc
[1
]
Csomo, Krisztian Benedek
[1
]
Varmuzsa, Edvard Marton
[1
]
Bognar, Eszter
[2
]
Pelyhe, Liza
[2
]
Nagy, Peter
[2
]
Kientzl, Imre
[2
]
Szabo, Daniel
[2
]
Weszl, Miklos
[3
]
Dobos, Gabor
[4
]
Lenk, Sandor
[4
]
Erdei, Gabor
[4
]
Kiss, Gabor
[4
]
Nagy, Lilien
[5
]
Sreter, Attila
[6
]
Belik, Andrea Alexandra
[7
]
Toth, Zsuzsanna
[8
]
Vag, Janos
[8
]
Joob-Fancsaly, Arpad
[1
]
Nemeth, Zsolt
[1
]
机构:
[1] Semmelweis Univ, Dept Oro Maxillofacial Surg & Stomatol, H-1085 Budapest, Hungary
[2] FERR VAZ Kft, H-1161 Budapest, Hungary
[3] Semmelweis Univ, Dept Translat Sci, H-1085 Budapest, Hungary
[4] Budapest Univ Technol & Econ, Inst Phys, Dept Atom Phys, H-1111 Budapest, Hungary
[5] Semmelweis Univ, Dept Prosthodont, H-1088 Budapest, Hungary
[6] Semmelweis Univ, Fac Dent, H-1085 Budapest, Hungary
[7] Semmelweis Univ, Dept Mol Biol, H-1094 Budapest, Hungary
[8] Semmelweis Univ, Dept Restorat Dent & Endodont, H-1088 Budapest, Hungary
关键词:
phosphoric acid;
hydrophilicity;
nano;
titanium-dioxide;
implant;
TITANIUM;
OSSEOINTEGRATION;
D O I:
10.3390/nano13030511
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Our research group developed a novel nano-pitted (NP) TiO2 surface on grade 2 titanium that showed good mechanical, osteogenic, and antibacterial properties; however, it showed weak hydrophilicity. Our objective was to develop a surface treatment method to enhance the hydrophilicity of the NP TiO2 surface without the destruction of the nano-topography. The effects of dilute and concentrated orthophosphoric (H3PO4) and nitric acids were investigated on wettability using contact angle measurement. Optical profilometry and atomic force microscopy were used for surface roughness measurement. The chemical composition of the TiO2 surface and the oxidation state of Ti was investigated using X-ray photoelectron spectroscopy. The ccH(3)PO(4) treatment significantly increased the wettability of the NP TiO2 surfaces (30 degrees) compared to the untreated control (88 degrees). The quantity of the absorbed phosphorus significantly increased following ccH(3)PO(4) treatment compared to the control and caused the oxidation state of titanium to decrease (Ti4+ -> Ti3+). Owing to its simplicity and robustness the presented surface treatment method may be utilized in the industrial-scale manufacturing of titanium implants.
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