Literature DB >> 17478133

Characteristic and in vitro bioactivity of a microarc-oxidized TiO(2)-based coating after chemical treatment.

Daqing Wei1, Yu Zhou, Dechang Jia, Yaming Wang.   

Abstract

Microarc oxidation (MAO) was used to prepare a TiO(2)-based coating containing Ca and P on titanium alloy. An alkali treatment was developed to modify the surface of the MAO coating to improve the apatite-forming ability of the coating. The chemically treated MAO coating exhibits a modified layer, with the main constituents being O, Ti, Ca and Na, showing anatase. The modified MAO coating shows a rough and porous morphology containing numerous nanoflakes of approximately 100nm thickness. During the alkali treatment process, P on the surface of the MAO coating shows a main dynamic process of dissolution; however, Ca exhibits a re-deposition process as well as dissolution. The formation of the modified layer could be explained by this mechanism: negatively charged HTiO(3)(-) ions are formed on the MAO coating due to the attack of OH(-) ions on the TiO(2) phase. The HTiO(3)(-) ions could incorporate sodium from the alkali solution and calcium from the alkali solution and MAO coating. The apatite-forming ability of the MAO coating is improved remarkably by the simple chemical treatment, since the surface of the alkali-treated MAO coating could provide abundant Ti-OH groups probably formed by ionic exchanges between (Ca2+, Na+) ions of the alkali-treated MAO coating and H3O+ ions of a simulated body fluid (SBF). Moreover, Ca released from the alkali-treated MAO coating increases the degree of supersaturation of SBF, promoting the formation of apatite. The apatite induced by the alkali-treated MAO coating possesses carbonated structure and pore networks on the nanometer scale.

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Year:  2007        PMID: 17478133     DOI: 10.1016/j.actbio.2007.03.001

Source DB:  PubMed          Journal:  Acta Biomater        ISSN: 1742-7061            Impact factor:   8.947


  12 in total

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4.  Enhancing osseointegration of titanium implants through large-grit sandblasting combined with micro-arc oxidation surface modification.

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5.  Osseointegration of bioactive microarc oxidized amorphous phase/TiO2 nanocrystals composited coatings on titanium after implantation into rabbit tibia.

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Journal:  J Mater Sci Mater Med       Date:  2014-01-31       Impact factor: 3.896

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Journal:  J Mater Sci Mater Med       Date:  2009-08-23       Impact factor: 3.896

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Journal:  Sci Rep       Date:  2016-06-29       Impact factor: 4.379

10.  Fabrication and in vitro release behavior of a novel antibacterial coating containing halogenated furanone-loaded poly(L-lactic acid) nanoparticles on microarc-oxidized titanium.

Authors:  Yicheng Cheng; Jiang Wu; Bo Gao; Xianghui Zhao; Junyan Yao; Shenglin Mei; Liang Zhang; Huifang Ren
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