中文
Announcement
More
Progress in Chemistry 2008, Vol. 20 Issue (12): 1868-1879 Previous Articles   Next Articles

• Review •

Preparation and Doping of Anodic TiO2 Nanotube Array

Guan Dongsheng1 Fang Haitao1** Lu Haofeng2 Sun Tao1 Li Feng2 Liu Min2

  

  1. (1.School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China; 2. Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China)

  • Received: Revised: Online: Published:
  • Contact: Fang Haitao
PDF ( 1766 ) Cited
Export

EndNote

Ris

BibTeX

The preparation and application of TiO2 nanotube array are widely investigated in recent years. Anodic oxidation adopted to prepare TiO2 nanotube array has attracted intensive attention due to its simplicity, low cost and easy industrialization. The preparation of TiO2 nanotube array by anodic oxidation is reviewed in this paper. Key factors affecting the formation of anodic TiO2 nanotube array are discussed based on the formation mechanism of anodic TiO2 nanotube array. In combination with the results of our research group, how to adjust tube diameter, tube length, wall thickness, and improve the quality of surface morphology of anodic TiO2 nanotube array by changing voltage, potential sweep rate, electrolyte, temperature and oxidation time is summarized. Finally, the development on the doping of anodic TiO2 nanotube array is presented.

CLC Number: 

[1 ] Mei Y F , Wu X L , Siu G G, et al . Physics Letters A , 2003 ,309 : 109 —113
[2 ] Tsuchiya H , Berger S , Schmuki P , et al . Electrochem.Commun. , 2007 , 9 : 545 —550
[3 ] Tsuchiya H , Macak J M, Schmuki P , et al . Chemical Physics Letters , 2005 , 410 : 188 —191
[4 ] Tsuchiya H , Macak J M, Schmuki P , et al . Corrosion Science ,2005 , 47 : 3324 —3335
[5 ] Tsuchiya H , Schmuki P. Electrochem. Commun. , 2005 , 7 :49 —52
[6 ] Tsuchiya H , Macak J M, Schmuki P , et al . Electrochem.Commun. , 2005 , 7 : 295 —298
[7 ] Choi J , Lim J H , Kim J K, et al . Nanotechnology , 2007 , 18 :art . no. 055603
[8 ] Sieber I , Schmuki P. J . Electrochem. Soc. , 2005 , 152 ( 9) :C639 —C644
[9 ] Wei W, Macak J M, Schmuki P. Electrochem. Commun. , 2008 ,10 : 428 —432
[10] Prakasam H E , Varghese O K, Grimes C A , et al .Nanotechnology , 2006 , 17 : 4285 —4291
[11] Tsuchiya H , Hueppe M, Schmuki P , et al . Sci . Technol . Adv.Mater. , 2003 , 5 : 119
[12] Han W Q , Gang Z, Li J S. J . Inorganic Materials , 2007 , 22(3) : 395 —399
[13] Yasuda K, Schmuki P. Eletrochimica Acta , 2007 , 52 : 4053 —4061
[14] Habazaki H , Oikawa Y, Fushimi K, et al . Electrochimica Acta ,2007 , 53 : 1775 —1781
[15] Macak J M, Tsuchiya H , Schmuki P , et al . J . Biomedical Materials Research Part A , 2005 , 75A (4) : 928 —933
[16] Gong D , Grimes C A , Varghese O K. J . Mater. Res. , 2001 , 16(12) : 3331 —3334
[17] 孙岚(Sun L) , 赖跃坤(Lai Y K) , 林昌健(Lin C J ) 等. 无机化学学报(Chinese Journal of Inorganic Chemistry) , 2007 , 23(11) : 1841 —1850
[18] Macak J M, Aldabergerova S , Schmuki P , et al . Angew. Chem.Int . Ed. , 2005 , 44 : 7463 —7465
[19] Varghese O K, Gong D , Grimes C A , et al . Sensors and Actuators B , 2003 , 93 : 338 —344
[20] Beranek R , Hildebrand H , Schmuki P. Electrochem. Solid-State Lett . , 2003 , 6 (3) : B12 —B14
[21] Ghicov A , Tsuchiya H , Schmuki P , et al . Electrochem.Commun. , 2005 , 7 : 505 —509
[22] Cai Q Y, Paulose M, Grimes C A , et al . J . Mater. Res. , 2005 ,20 (1) : 230 —235
[23] Paulose M P , Grimes C A , Ong K G, et al . Nanotechnology ,2006 , 17 : 398 —402
[24] Taveira L V , Macak J M, Schmuki P , et al . J . Electrochem.Soc. , 2005 , 152 (10) : B405 —B410
[25] Macak J M, Sirotna K, Schmuki P. Electrochimica Acta , 2005 ,50 : 3679 —3684
[26] Mor G K, Varghese O K, Grimes C A , et al . Solar Energy Materials &Solar Cells , 2006 , 90 : 2011 —2075
[27] Paulse M, Shankar K, Grimes C A , et al . J . Phys. Chem. B ,2006 , 110 (33) : 16179 —16184
[28] Shankar K, Mor G K, Grimes C A , et al . Nanotechnology , 2007 ,18 : art . no. 065707
[29] Albu S P , Ghicov A , Schmuki P , et al . Phys. Stat . Sol . , 2007 ,1 (2) : R65 —R67
[30] Prakasam H E , Shankar K, Grimes C A , et al . J . Phys. Chem.C , 2007 , 111 (20) : 7235 —7241
[31] Paulose M, Prakasam H E , Grimes C A , et al . J . Phys. Chem.C , 2007 , 111 : 14992 —14997
[32] 郑青(Zheng Q) , 周保学(Zhou B X) , 廖俊生(Liao J S) 等. 化学进展(Progress in Chemistry) , 2007 , 19 (1) : 117 —122
[33] 赖跃坤(Lai Y K) , 孙岚(Sun L) , 林昌健(Lin C J ) 等. 物理化学学报(Acta Phys. Chim. Sin. ) , 2004 , 20 (9) : 1063 —1066
[34] Quan X, Yang S G, Zhao H M, et al . Environ. Sci . Technol . ,2005 , 39 : 3770 —3775
[35] Quan X, Ruan X L , Zhao H M, et al . Environmental Pollution ,2007 , 147 : 409 —414
[36] Macak J M, Zlamal M, Schmuki P , et al . Small , 2007 , 3 (2) :300 —304
[37] Lai Y K, Sun L , Lin C J , et al . J . Electrochem. Soc. , 2006 ,153 (7) : D123 —D127
[38] Zhu J H , Yang D , Jiang Z Y, et al . J . Nanopart . Res. , 2008 ,10 : 729 —736
[39] Zlamal M, Macak J M, Schmuki P , et al . Electrochem.Commun. , 2007 , 9 : 2822 —2826
[40] 孙岚(Sun L) , 宫娇娇(Gong J J ) , 林昌健(Lin C J ) 等. 精细化工(Fine Chemicals) , 2007 , 24 (4) : 317 —320
[41] Balaur E , Macak J M, Schmuki P , et al . Electrochem.Commun. , 2005 , 7 : 1066 —1070
[42] Lai Y K, Lin C J , Sun L , et al . Electrochem. Commun. , 2008 ,10 : 387 —391
[43] Liu G, Li Feng , Cheng H M, et al . Nanotechnology , 2008 , 19 :art . no. 025606
[44] 李静(Li J ) , 云虹( Yun H) , 林昌健(Lin C J ) . 电化学(Electrochemistry) , 2007 , 13 (4) : 367 —371
[45] Li H Y, Bai X D , Wang J S , et al . Electrochem. Solid-State Lett . , 2006 , 9 (5) : B28 —B31
[46] Li J , Yun H , Lin C J . J . Electrochem. Soc. , 2007 , 154 (11) :C631 —C636
[47] Mohapatra S K, Misra M, Raja K S , et al . J . Catal . , 2007 ,246 : 362 —369
[48] Mohapatra S K, Misra M, Raja K S , et al . J . Phys. Chem. C ,2007 , 111 : 8677 —8685
[49] Chen S G, Paulose M, Grimes C A , et al . J . Photochemistry and Photobiology A: Chemistry , 2006 , 177 : 177 —184
[50] Wang H , Yip C T, Xie M H , et al . Appl . Phys. Lett . , 2006 ,89 : art . no. 023508
[51] Ong K G, Varghese O K, Grimes C A , et al . Solar Energy Materials &Solar Cells , 2007 , 91 : 250 —257
[52] Zhu K, Neale N R , Frank A J , et al . Nano Lett . , 2007 , 7 (1) :69 —74
[53] Oh S H , Jin S H. Mater. Sci . Eng. C , 2006 , 26 : 1301 —1306
[54] Tsuchiya H , Macak J M, Schmuki P. J . Biomedical Materials Research Part A , 2006 , 77A (3) : 534 —541
[55] Zhang Y Y, Fu W Y, Yang H B , et al . Applied Surface Science ,2008 , 254 : 5545 —5547
[56] Zheng Q , Zhou B X, Bai J , Li L H , et al . Adv. Mater. , 2008 ,20 : 1044 —1049
[57] Prida V M, Hemandez-Velez M, Pirota K R , et al .Nanotechnology , 2005 , 16 : 2696 —2702
[58] Vega V , Prida V M, Manova E , et al . Nanoscale Res. Lett . ,2007 , 2 : 355 —363
[59] 许振明(Xu Z M) , 徐孝勉(Xu X M) . 铝和镁的表面处理(Surface Treatment of Aluminum and Magnetism) . 上海: 上海科学技术文献出版社(Shanghai : Shanghai Scientific Technology Literature Press) , 2005. 129 —131
[60] Sul Y T, Johansson C B , Albrektssson T, et al . Medical Engineering & Physics , 2001 , 23 : 329 —346
[61] Mor G K, Varghese O K, Grimes C A , et al . J . Mater. Res. ,2003 , 18 (11) : 2588 —2593
[62] Zhao J L , Wang X H , Li L T, et al . Solid State Commun. ,2005 , 134 : 705 —710
[63] Raja K S , Misra M, Paramguru K. Eletrochimica Acta , 2005 ,51 : 154 —165
[64] Mor G K, Varghese O K, Grimes C A , et al . Thin Solid Films ,006 , 496 : 42 —48
[65] Jaroenworaluck A , Regonini D , Bowen C R , et al . J . Mater.Sci . , 2007 , 42 : 6729 —6734
[66] Varghese O K, Gong D , Grimes C A , et al . J . Mater. Res. ,2003 , 18 (1) : 156 —165
[67] Macak J M, Albu S P , Schmuki P. Phys. Stat . Sol . , 2007 , 1(5) : 181 —183
[68] Macak J M, Tsuchiya H , Schmuki P. Angew. Chem. Int . Ed. ,2005 , 44 : 2100 —2102
[69] Tsuchiya H , Macak J M, Schmuki P , et al . Electrochem.Commun. , 2005 , 7 : 576 —580
[70] Feng X J , Macak J M, Schmuki P. Chem. Mater. , 2007 , 19 :1534 —1536
[71] Bauer S , Kleber S , Schmuki P , et al . Electrochem. Commun. ,2006 , 8 : 1321 —1325
[72] Richter C , Wu Z, Menon L , et al . Adv. Mater. , 2007 , 19 :946 —948
[73] Hahn R , Macak J M, Schmuki P. Electrochem. Commun. ,2007 , 9 : 947 —952
[74] Allam N K, Grimes C A. J . Phys. Chem. C , 2007 , 111 :13028 —13032
[75] Nguyen Q A , Bhargava Y V , Devine T M. Electrochem.Commun. , 2008 , 10 : 471 —475
[76] Raja K S , Gandhi T, Misra M. Electrochem. Commun. , 2007 ,9 : 1069 —1076
[77] Shankar K, Mor G K, Grimes C A , et al . J . Phys. Chem. C ,2007 , 111 (1) : 21 —26
[78] Mor G K, Shankar K, Grimes C A , et al . Nano Lett . , 2005 , 5 :191
[79] Albu S P , Kim D , Schmuki P. Angew. Chem. Int . Ed. , 2008 ,47 : 1916 —1919
[80] Kaneco S , Chen Y S , Crittenden J C , et al . Scripta Materialia ,2007 , 56 : 373 —376
[81] Regonini D , Bowen C R , Stevens R , et al . Phy. Stat . Sol . (a) ,2007 , 204 : 1814 —1819
[82] Macak J M, Taveira L V , Schmuki P , et al . J . Electroceram. ,2006 , 16 : 29 —34
[83] Macak J M, Tsuchiya H , Schmuki P , et al . Chemical Physics Letters , 2006 , 428 : 421 —425
[84] Prida V M, Manova E , Aranda P , et al . J . Magnetism and Magnetic Materials , 2007 , 316 : 110 —113
[85] Chanmanee W, Watcharenwong A , Rajeshwar K, et al . J . Am.Chem. Soc. , 2008 , 130 : 965 —974
[86] Chanmanee W, Watcharenwong A , Rajeshwar K, et al .Electrochem. Commun. , 2007 , 9 : 2145 —2149
[87] Ghicov A , Schmidt B , Schmuki P , et al . Chem. Phys. Lett . ,2007 , 433 : 323 —326
[88] Lei L C , Su YL , Zhou M H , et al . Materials Research Bulletin ,2007 , 42 : 2230 —2236
[89] 李静(Li J ) , 云虹(Yun H) , 林昌健(Lin C J ) . 物理化学学报(Acta Phys.2Chim. Sin. ) , 2007 , 23 (12) : 1886 —1892
[90] 张文彦(Zhang W Y) , 李广忠(Li G Z) , 李亚宁(Li Y N) 等.中国有色金属学报( Trans. Nonferrous Met . Soc. China ) ,2007 , 17 : S692 —S695
[91] 管东升(Guan D S) , 方海涛(Fang H T) , 孙明仁(Sun M R)等. 第二十五届中国化学会学术年会论文摘要集(上册)(Abstracts of the 25th CCS Congress ( I) ) . 吉林(Jilin) , 2006.07-P-103
[92] Ghicov A , Macak J M, Schmuki P , et al . Nano Lett . , 2006 , 6(5) : 1080 —1082
[93] Vitiello R P , Macak J M, Schmuki P , et al . Electrochem.Commun. , 2006 , 8 : 544 —548
[94] Hahn R , Ghicov A , Schmuki P , et al . Nanotechnology , 2007 ,18 : art . no. 105604
[95] Shankar K, Paulose M, Grimes C A , et al . J . Phys. D: Appl .Phys. , 2005 , 38 : 3543 —3549
[96] Tang X H , Li D Y. J . Phys. Chem. C , 2008 , 112 : 5405 —5409
[97] Xu C K, Shaban Y A , Ingler W B , et al . Solar Energy Materials&Solar Cells , 2007 , 91 : 938 —943
[98] Su Y L , Zhang X W, Han S , et al . Electrochem. Commun. ,2007 , 9 : 2291 —2298
[99] Shankar K, Tep K C , Grimes C A , et al . J . Phys. D: Appl .Phys. , 2006 , 39 : 2361 —2366
[100] Lei L C , Su Y L , Zhou M H , et al . Journal of Photochemistry and Photobiology A: Chemistry , 2008 , 194 : 152 —160
[101] Kim D , Schmuki P , Tsuchiya H , et al . Electrochem. Commun. ,2008 , 10 : 910 —913
[102] Lu N , Quan X, Li J Y, et al . J . Phys. Chem. C , 2007 , 111 :11836 —11842
[103] Li J Y, Lu N , Zhao H M, et al . Ind. Eng. Chem. Res. , 2008 ,47 : 3804 —3808
[104] Paulose M, Varghese O K, Grimes C A , et al . Nanotechnology ,2006 , 17 : 1446 —1448

[1] Zhang He, Zhang Chi, Song Ye. Fabrication of Anodic Titania Nanotube Arrays with Tunable Morphologies [J]. Progress in Chemistry, 2016, 28(6): 773-783.
[2] Wang Jing, Fan Haowen, Zhang He, Chen Qun, Liu Yi, Ma Weihua. Anodizing Process of Titanium and Formation Mechanism of Anodic TiO2 Nanotubes [J]. Progress in Chemistry, 2016, 28(2/3): 284-295.
[3] Feng Yong, Wu Deli*, Ma Luming. Iron Oxide Catalyzed Fenton-Like Reaction [J]. Progress in Chemistry, 2013, 25(07): 1219-1228.
[4] Zhu Xufei, Han Hua, Qi Weixing, Lu Chao, Jiang Longfei, Duan Wenqiang. Theoretical Foundation and Limitation of Two-Step Anodizing Technology [J]. Progress in Chemistry, 2012, 24(11): 2073-2086.
[5] Feng Yan, Wu Qingsong, Zhang Guoying, Sun yaqiu. Visible-Light Responsed Bi2WO6 Photocatalysts [J]. Progress in Chemistry, 2012, 24(11): 2124-2131.
[6] Zhang Chi, Liu Zhitian, Shen Zhi, Liu Jing. Polymer Light-Emitting Electrochemical Cell [J]. Progress in Chemistry, 2012, 24(07): 1359-1367.
[7] Ruan Bei Yan Baijun Zhang Jiayun. Novel La2Mo2O9Oxide-Ion Conductor [J]. Progress in Chemistry, 2010, 22(01): 44-50.