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中国腐蚀与防护学报  2005, Vol. 25 Issue (1): 53-56     
  研究报告 本期目录 | 过刊浏览 |
阳极二氧化钛薄膜的光电化学防腐蚀特性
武朋飞;李谋成;沈嘉年;肖美群;刘东
上海大学材料所269信箱
PHOTO- ELECTROCHEMICAL ANTICORROSION EFFECT OF ANODIC TiO2 FILMS
Pengfei Wu;Moucheng Li;Jianian Shen;Meiqun Xiao;Dong Liu
上海大学材料所269信箱
全文: PDF(127 KB)  
摘要: 利用阳极氧化法制备TiO2薄膜,并研究了薄膜的光电化学防腐作用。XRD和SEM分析表明TiO2薄膜由非晶和锐钛矿组成,其表面形貌较为粗糙。在紫外光的昭射下,测试了薄膜在模拟海水中的电极电位、极化曲线、电化学阻抗谱以及与碳钢的耦合电流。结果表明TiO2薄膜=对碳钢在模拟海水中的腐蚀具有较好的光阴极保护作用。
关键词 TiO2腐蚀光电化学防腐蚀效应阳极氧化    
Abstract:The photo- electrochemical anticorrosion effect of the TiO2 films was investigated in 3% NaCl solution. The TiO2 films were prepared by using anodization method in alkaline solutions.X - ray and SEM analyses indicated that the TiO2 films were composed of amorphous and crystalline anatase, and the surface was very rough.Under UV illumination in man - made sea water,the polarzation curves and impedance spectrum of TiO2 and coupling photo - current curve between TiO2 filn and 45# carbon steel were measured. The results showed that the anodic TiO2 films had photo - electrochemical anticorrosion effect for carbon steel under UV illumination
Key wordsTiO2    corrosion    photo-eectrochemical anticorrosion    anodization
收稿日期: 2003-07-20     
ZTFLH:  TG113.2  
通讯作者: 武朋飞     E-mail: wupfei@163.com
Corresponding author: Pengfei Wu     E-mail: wupfei@163.com

引用本文:

武朋飞; 李谋成; 沈嘉年; 肖美群; 刘东 . 阳极二氧化钛薄膜的光电化学防腐蚀特性[J]. 中国腐蚀与防护学报, 2005, 25(1): 53-56 .
Pengfei Wu, Moucheng Li, Jianian Shen, Meiqun Xiao, Dong Liu. PHOTO- ELECTROCHEMICAL ANTICORROSION EFFECT OF ANODIC TiO2 FILMS. J Chin Soc Corr Pro, 2005, 25(1): 53-56 .

链接本文:

https://www.jcscp.org/CN/      或      https://www.jcscp.org/CN/Y2005/V25/I1/53

[1]OhkoY ,SaitohS ,TatsumaT ,FujishimaA .Photoelectrochemicalanticorrosionandself-cleaningeffectsofaTiO2 coatingfortype304stainlesssteel[J].J .Electrochem.Soc.,2001,148(1):B24-B28
[2]YuanJ ,FujisawaR ,TsujikawaS .PhotopotentialsofcoppercoatedwithTiO2 bysol-gelmethod[J].Zairyo-to-Kankyo,1994,43:433-440
[3]FujisawaR ,TsujikawaS .Photo-protectionof304stainlesssteelwithTiO2 coating[J].Mater.Sci.Forum,1995,185-188:1075-1082
[4]YuanJ ,TsujikawaS .Characterizationofsol-gel-derivedTiO2coatingandtheirphotoeffectsoncoppersubstrates[J].J .Elec trochem.Soc.,1995,142(10):3444-3450
[5]YuanJ ,TsujikawaS .Photo-effectofsol-gelderivedTiO2 coat ingoncarbonsteelinalkalinesolution[J].Zairyo-to-Kankyo,1995,44:534-542
[6]HuangJ ,ShinoharaT ,TsujikawaS .ProtectionofcarbonsteelfromatmosphericcorrosionbyTiO2 coating[J].Zairyo-to-Kankyo,1999,48:575-582
[7]HuangJ ,ShinoharaT ,TsujikawaS .EffectsofinterfacialironoxidesoncorrosionprotectionofcarbonsteelbyTiO2 coatingunderillumi nation[J].Zairyo-to-Kankyo,1997,46:651-661
[8]SulYT ,JohanssonCB ,JeongY ,AlbrektssonT .Theelectrochem icaloxidegrowthbehaviourontitaniuminacidandalkalineelec trolytes[J].MedicalEngineering&Physics,2001,23:329-346
[9]SeeleyB .Anodizingthereactivemetals[J].MetalFinishing,1986,84(8):11-13
[10]SharmaAK .Anodizingtitaniumforspaceapplications[J].ThinSolidFilms,1992,208:48-54
[11]LarssonC ,ThomsenP ,AronssonBO ,etal.Boneresponsetosur face-modifiedtitaniumimplants:studiesontheearlytissuere sponsetomachinedandelectropolishedimplantswithdifferentox idethicknesses[J].Biomaterials,1996,17(6):605-616
[12]DelplanckeJL ,DegrezM ,FontanaA ,WinandR .Self-colouran odizingoftitanium[J].Surf.Technol.,1982,16:153-162
[13]GeduldH .Anodizingtitanium[J].MetalFinishing,1967,65:65-66
[14]LadjemA .Reviewanodicoxidationoftitaniumanditsalloys[J].J .Mater.Sci.,1973,8:688-704
[15]HugotLeGoffA .StructureofverythinTiO2 filmsstudiedbyRa manspectroscopywithinterferenceenhancement[J].ThinSoliFilms,1986,142(2):193-197
[16]OhtsukaT ,GuoJ ,SatoN .Ramanspectraoftheanodicoxidefilmontitaniuminacidicsurfaceandneutralphosphatesolutions[J].J .Electrochem.Soc.,1986,133(12):2473-2476
[17]BirchJR ,BurleighTD .Oxidesformedontitaniumbypolishing,etching,anodizing,orthermaloxidizing[J].Corrosion,2000,56(12):1233-1241
[18]OhtsukaT ,OtsukiT .Effectofultra-violetlightirradiationonanodicoxidefilmsontitaniuminsulfuricacidsolution[J].J .Elec troanal.Chem.,1999,473:272-278
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