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Influence of NH_3-treating temperature on visible light photocatalytic activity of N-doped P_(25)-TiO_2

Influence of NH_3-treating temperature on visible light photocatalytic activity of N-doped P_(25)-TiO_2
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摘要 The influence of NH3-treating temperature on the visible light photocatalytic activity of N-doped P25-TiO2 as well as the relationship between the surface composition structure of TiO2 and its visible light photocatalytic activity were investigated.The results showed that N-doped P25-TiO2 treated at 600℃ had the highest activity.The structure of P25-TiO2 was converted from anatase to rutile at 700℃.Moreover,no N-doping was detected at the surface of P25-TiO2.There was no simply linear relationship between the visible light photocatalytic activity and the concentration of doped nitrogen,and visible light absorption.The visible light photocatalytic activity of N-doped P25-TiO2 was mainly influenced by the synergistic action of the following factors:(i) the formation of the single-electron-trapped oxygen vacancies(denoted as Vo);(ii) the doped nitrogen on the surface of TiO2;(iii) the anatase TiO2 structure. The influence of NH3-treating temperature on the visible light photocatalytic activity of N-doped P25-TiO2 as well as the relationship between the surface composition structure of TiO2 and its visible light photocatalytic activity were investigated.The results showed that N-doped P25-TiO2 treated at 600℃ had the highest activity.The structure of P25-TiO2 was converted from anatase to rutile at 700℃.Moreover,no N-doping was detected at the surface of P25-TiO2.There was no simply linear relationship between the visible light photocatalytic activity and the concentration of doped nitrogen,and visible light absorption.The visible light photocatalytic activity of N-doped P25-TiO2 was mainly influenced by the synergistic action of the following factors:(i) the formation of the single-electron-trapped oxygen vacancies(denoted as Vo);(ii) the doped nitrogen on the surface of TiO2;(iii) the anatase TiO2 structure.
出处 《Science China Chemistry》 SCIE EI CAS 2009年第8期1164-1170,共7页 中国科学(化学英文版)
关键词 P25-TiO2 nitrogen doping NH3 treatment PHOTOCATALYSIS VISIBLE light PHOTOCATALYTIC activity P25-TiO2,nitrogen doping,NH3 treatment,photocatalysis,visible light photocatalytic activity
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  • 1L. Qian,Z.S. Jin,J.W. Zhang,Y.B. Huang,Z.J. Zhang,Z.L. Du.Study of the visible-excitation luminescence of NTA-TiO2(AB) with single-electron-trapped oxygen vacancies[J]. Applied Physics A . 2005 (8)
  • 2Ghicov A,Macak J M,Tsuchiya H,Kunze J,Haeablein V,Kleber S,Schumaki P.TiO2 nanotube layers:Dose effects during nitrogen doping by ion implantation. Chemical Physics Letters . 2006
  • 3WANG Yan ZHANG JiWei JIN ZhenSheng WU ZhiShen ZHANG ShunLi.Visible light photocatalytic decoloration of methylene blue on novel N-doped TiO_2[J].Chinese Science Bulletin,2007,52(15):2157-2160. 被引量:3
  • 4Chen X B,Lou Y B,Samia A C S,Burda C,Gole J L.Formation of oxynitrate as the photocatalytic enhancing site in nitrogen-doped tita- nia nanocatalysts: Comparison to a commercial nanopowder. Advanced Functional Materials . 2005
  • 5Sato S.Photocatalytic activity of NOx-doped TiO2 in the visible light region. The Journal of Chemical Physics . 1986
  • 6Asahi R,Morikawa T,Ohwaki T,et al.Visible-light photocatalysis in nitrogen-doped titanium oxides. Science . 2001
  • 7Ihara T,Miyoshi M,Iriyama Y,et al.Visible-light-active titanium oxide photocatalyst realized by an oxygen-deficient structure and by nitrogen doping. Applied Catalysis . 2003
  • 8Irie H,Watanabe Y,Hashimoto K.2</sub>-xNx Powders&amp;sid=Journal of Physics&amp;aufirst=Irie H');&#xA; ">Nitrogen-Concentration Dependence on Photocatalytic Activity of TiO<sub>2</sub>-xNx Powders. Journal of Physics . 2003
  • 9Ryuhei Nakamura,Tomoaki Tanaka,Yoshibiro Nakato.Mechanism for Visible Light Responses in Anodic Photocurrents at N-Doped TiO2 Film Electrodes. Journal of Physical Chemistry B . 2004
  • 10Wang Y,Feng CX,Jin ZS, et al.A novel N-doped TiO2 with high visible light photocatalytic activity. Journal of Molecular Catalysis A Chemical . 2006

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