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采用氢微波等离子体对纳米TiO2薄膜催化剂进行改性处理来改善其光谱响应范围.AFM观察表明未经烧结的TiO2薄膜表面形貌发生较大变化,经过500℃1h热处理过的样品表面形貌变化不大,但处理后样品表面颜色变为淡灰色,并随着气压和功率增大而变深;紫外-可见光谱分析表明,纳米TiO2薄膜催化剂的光谱响应曲线发生了12~25 nm红移;XPS定量分析证实,改性处理后部分TiO2被还原为低价钛氧化物,同时在TiO2薄膜的表面产生了氧空位,从而使样品的吸收边红移,可见光吸收增加.通过不同气压、功率、时间研究显示,在气压/微波功率/时间为16Torr/400W/5min条件下改性效果较理想.

参考文献

[1] FUJISHIMA A;HONDA A .Electrochemical photolysis of water at a semiconductor electrode[J].Nature,1972,238:37-38.
[2] ROBERT G;BRECKENRIDGE;WILLIAM R HOSLER .Electrical Properties of Titanium Dioxide Semiconductors[J].Physical Review,1953,91:793-802.
[3] CRONEMEYER D C .Infrared Absorption of Reduced Rutile TiO2 Single Crystals[J].Physical Review,1959,113:1222-1226.
[4] GHOSH A K;MARUSKA H B .Photoelectrolysis of Water in Sunlight with Sensitized Semiconductor Electrodes[J].Journal of the Electrochemical Society,1977,124:1516.
[5] CHOI W Y;TERMIN A;HOFFMANN M R .The Role of Metal-ion Dopants in Quantum-sized TiO2 Correlation between Photoreactivity and Charge-Carrier Recombination Dynamics[J].Journal of Physical Chemistry,1994,98:13669-13679.
[6] SAMUNEVA B;KOZHUKHAROV V;TRAPALIS C H et al.Sol-gel processing of titanium-containing thin coatings,partⅠ:pre-paration and structure[J].Materials Science,1993,28:2353-2360.
[7] ASAHI R;MORIKAWA T et al.Visible-Light Photocatalysis in Nitrogen-Doped Titanium Oxides[J].Science,271(293):269.
[8] 孙奉玉;吴鸣;李文钊.二氧化钛表面光学特性与光催化活性的关系[J].催化学报,1998(03):121-124.
[9] SCROCCO M .X-ray photoelectron spectra of Ti4 + in TiO2.Evidence of band structure[J].Chemical Physics Letters,1979,61:453-456.
[10] T. Godfroid;R. Gouttebaron;J.P. Dauchot;Ph. Leclere;R. Lazzaroni;M. Hecq .Growth of ultrathin Ti films deposited on SnO_2 by magnetron sputtering[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2003(1/2):57-62.
[11] Marino CEB;Nascente PAP;Biaggio SR;Rocha RC;Bocchi N .XPS characterization of anodic titanium oxide films grown in phosphate buffer solutions[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2004(1/2):109-112.
[12] Casaletto MP.;Kaciulis S.;Mattogno G.;Pandolfi L.;Scavia G.;Ingo GM. .Surface studies of in vitro biocompatibility of titanium oxide coatings[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2001(1/2):167-177.
[13] Pouilleau J.;Groult H.;Marcus P.;Devilliers D. .SURFACE STUDY OF A TITANIUM-BASED CERAMIC ELECTRODE MATERIAL BY X-RAY PHOTOELECTRON SPECTROSCOPY[J].Journal of Materials Science,1997(21):5645-5651.
[14] Jing LQ.;Sun XJ.;Shang J.;Cai WM.;Xu ZL. .The surface properties and photocatalytic activities of ZnO ultrafine particles[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2001(3/4):308-314.
[15] Nakamura I.;Kutsuna S.;Ihara T.;Sugihara S.;Takeuchi E.;Negishi N. .Role of oxygen vacancy in the plasma-treated TiO2 photocatalyst with visible light activity for NO removal[J].Journal of molecular catalysis, A. Chemical,2000(1/2):205-212.
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