388
Views
4
CrossRef citations to date
0
Altmetric
Original Articles

Microstructures and photo-catalytic properties of B3+ and F co-doped TiO2 films

, , , &
Pages 310-326 | Received 01 May 2010, Accepted 12 Oct 2010, Published online: 03 Jun 2011

References

  • Mori , K , Maki , K , Kawasaki , S , Yuan , S and Yamashita , H . 2008 . Hydrothermal synthesis of TiO2 photocatalysts in the presence of NH4F and their application for degradation of organic compounds . Chem. Eng. Sci. , 63 : 5066 – 5070 .
  • Han , F , Kambala , VSR , Srinivasan , M , Rajarathnam , D and Naidu , R . 2009 . Tailored titanium dioxide photocatalysts for the degradation of organic dyes in wastewater treatment: A review . Appl. Catal., A , 359 : 25 – 40 .
  • Fujishima , A , Rao , TN and Tryk , DA . 2000 . Titanium dioxide photocatalysis . J. Photochem. Photobiol., C , 1 : 1 – 12 .
  • Hu , C , Yu , JC , Hao , ZP and Wong , PK . 2003 . Photocatalytic degradation of triazine-containing azo dyes in aqueous TiO2 suspensions . Appl. Catal., B , 42 : 47 – 55 .
  • Yu , JC , Ho , W and Yu , J . 2005 . Efficient visible-light-induced photocatalytic disinfection on sulfur-doped nanocrystalline titania . Environ. Sci. Technol. , 39 : 1175 – 1179 .
  • Wu , XH , Ding , XB , Qin , W , He , WD and Jiang , ZH . 2006 . Enhanced photo-catalytic activity of TiO2 films with doped La prepared by micro-plasma oxidation method . J. Hazard. Mater. , 137 : 192 – 197 .
  • Im , JS , Yun , SM and Lee , YS . 2009 . Investigation of multielemental catalysts based on decreasing the band gap of titania for enhanced visible light photocatalysis . J. Colloid Interface Sci. , 336 : 183 – 188 .
  • Yu , JC , Yu , J , Ho , W , Jiang , Z and Zhang , L . 2002 . Effects of F-doping on the photocatalytic activity and microstructures of nanocrystalline TiO2 powders . Chem. Mater. , 14 : 3808 – 3816 .
  • Sclafani , A , Mozzanega , MN and Herrmann , JM . 1997 . Influence of silver deposits on the photocatalytic activity of titania . J. Catal. , 168 : 117 – 120 .
  • Anpo , M and Takeuchi , M . 2003 . The design and development of highly reactive titanium oxide photocatalysts operating under visible light irradiation . J. Catal. , 216 : 505 – 516 .
  • Choi , W , Termin , A and Hoffmann , MR . 1994 . The role of metal ion dopants in quantum-sized TiO2: Correlation between photoreactivity and charge carrier recombination dynamics . J. Phys. Chem. , 98 : 13669 – 13679 .
  • Wang , J , Uma , S and Klabunde , KJ . 2004 . Visible light photocatalysis in transition metal incorporated titania-silica aerogels . Appl. Catal., B , 48 : 151 – 154 .
  • Lam , RCW , Leung , MKH , Leung , DYC , Vrijmoed , LLP , Yam , WC and Ng , SP . 2007 . Visible-light-assisted photocatalytic degradation of gaseous formaldehyde by parallel-plate reactor coated with Cr ion-implanted TiO2 thin film . Sol. Energy Mater. Sol. Cells , 91 : 54 – 61 .
  • Xu , AW , Gao , Y and Liu , HQ . 2002 . The preparation, characterization, and their photocatalytic activities of rare-earth-doped TiO2 nanoparticles . J. Catal. , 207 : 151 – 157 .
  • Wang , YQ , Cheng , HM , Zhang , L , Hao , YZ , Ma , JM , Xu , B and Li , WH . 2000 . The preparation, characterization, photoelectrochemical and photocatalytic properties of lanthanide metal-ion-doped TiO2 nanoparticles . J. Mol. Catal. A: Chem. , 151 : 205 – 216 .
  • Li , YZ , Hwang , DS , Lee , NH and Kim , SJ . 2005 . Synthesis and characterization of carbon-doped titania as an artificial solar light sensitive photocatalyst . Chem. Phys. Lett. , 404 : 25 – 29 .
  • Zou , ZG , Zhao , JC , Fu , XZ , Zhang , PY , Chen , J , Zhu , HM and Ye , JH . 2004 . Development on solar energy conversion and environmental applications of photocatalysis . J. Funct. Mater. , 35 : 83 – 88 .
  • Asahi , R , Morikawa , T , Ohwaki , T , Aoki , K and Taga , Y . 2001 . Visible-light photocatalysis in nitrogen-doped titanium oxides . Science , 293 : 269 – 271 .
  • Li , DZ , Huang , HJ , Chen , X , Chen , ZX , Li , WJ , Ye , D and Fu , XZ . 2007 . New synthesis of excellent visible-light TiO2 − xNx photocatalyst using a very simple method . J. Solid State Chem. , 180 : 2630 – 2634 .
  • Li , Y , Hwang , DS , Lee , NH and Kim , SJ . 2005 . Synthesis and characterization of carbon-doped titania as an artificial solar light sensitive photocatalyst . Phys. Lett. , 404 : 25 – 29 .
  • Takeshita , K , Yamakata , A , Ishibashi , TA , Onishi , H , Nishijima , K and Ohno , T . 2006 . Transient IR absorption study of charge carriers photogenerated in sulfur-doped TiO2 . J. Photochem. Photobiol. A , 177 : 269 – 275 .
  • Ho , W , Yu , JC and Lee , S . 2006 . Synthesis of hierarchical nanoporous F-doped TiO2 spheres with visible light photocatalytic activity . Chem. Commun. , 10 : 1115 – 1117 .
  • Zhao , W , Ma , WH , Chen , CC , Zhao , JC and Shuai , ZG . 2004 . Efficient degradation of toxic organic pollutants with Ni2O3/TiO2 − xBx under visible irradiation . J. Am. Chem. Soc. , 126 : 4782 – 4783 .
  • Lin , L , Zheng , RY , Xie , JL , Zhu , YX and Xie , YC . 2007 . Synthesis and characterization of phosphor and nitrogen co-doped titania . Appl. Catal., B , 76 : 196 – 202 .
  • Li , D , Haneda , H , Hishita , S and Ohashi , N . 2005 . Visible-light-driven N–F–codoped TiO2 photocatalysts. 1. Synthesis by spray pyrolysis and surface characterization . Chem. Mater. , 17 : 2588 – 2595 .
  • Ling , QC , Sun , JZ and Zhou , QY . 2008 . Preparation and characterization of visible-light-driven titania photocatalyst co-doped with boron and nitrogen . Appl. Surf. Sci. , 254 : 3236 – 3241 .
  • Xie , Y and Zhao , XJ . 2008 . The effects of synthesis temperature on the structure and visible-light-induced catalytic activity of F–N-codoped and S–N-codoped titania . J. Mol. Catal. A: Chem. , 285 : 142 – 149 .
  • Du , WC , Wang , HT , Zhong , W , Shen , L and Du , QG . 2005 . High refractive index films prepared from titanium chloride and methyl methacrylate via a non-aqueous sol–gel route . J. Sol-Gel Sci. Technol. , 34 : 227 – 231 .
  • Avci , N , Smet , PF , Poelman , H , Velde , NVK , Buysser , D , Driessche , IV and Poelman , D . 2009 . Characterization of TiO2 powders and thin films prepared by non-aqueous sol–gel techniques . J. Sol-Gel Sci. Technol. , 52 : 424 – 431 .
  • Yao , MM , He , YD , Zhang , W and Gao , W . 2005 . Oxidation resistance of boiler steels with Al2O3–Y2O3 nano- and micro-composite coatings produced by sol-gel process . Mater. Trans. , 46 : 2089 – 2092 .
  • Li , J , Yao , MM , Zhang , Y and Yang , H . 2009 . Photo-catalytic properties of TiO2–Fe2O3–La2O3 nano-composite films . Surf. Rev. Lett. , 16 : 315 – 321 .
  • Liu , G , Wang , XW , Chen , ZG , Cheng , HM and Qing , G . 2009 . The role of crystal phase in determining photocatalytic activity of nitrogen doped TiO2 . J. Colloid Interface Sci. , 329 : 331 – 338 .
  • Zhou , MH , Yu , JG , Cheng , B and Yu , HG . 2005 . Preparation and photocatalytic activity of Fe-doped mesoporous titanium dioxide nanocrystalline photocatalysts . Mater. Chem. Phys. , 93 : 159 – 163 .
  • Wu , YM , Zhang , JL , Xiao , L and Chen , F . 2009 . Preparation and characterization of TiO2 photocatalysts by Fe3+ doping together with Au deposition for the degradation of organic pollutants . Appl. Catal., B , 88 : 525 – 532 .
  • Yamashita , H , Harada , M , Misaka , J , Takeuchi , M , Neppolian , B and Anpo , M . 2003 . Photocatalytic degradation of organic compounds diluted in water using visible light-responsive metal ion-implanted TiO2 catalysts: Fe ion-implanted TiO2 . Catal. Today , 84 : 191 – 196 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.