欢迎登录材料期刊网

材料期刊网

高级检索

TiO2 is a promising photocatalyst. However, the low photocatalytic efficiency calls for the modification of TiO2. Metal- and nonmetal-doping of TiO2 have been proved to be effective ways to enhance photocatalytic properties. This review provides a deep insight into the understanding of the metal- and nonmetal-doped TiO2 photocatalysts. This article begins with the introduction of the crystal structures of TiO2 and applications of TiO2 materials. We then reviewed the doped-TiO2 system in two categories: (1) metal-doped TiO2photocatalysts system, and (2) nonmetal-doped TiO2 photocatalysts system. Both experimental results and theoretical analyses are elaborated in this section. In the following part, for the advantages of TiO2 thin films over particles, various preparation methods to obtain TiO2 thin films are briefly discussed. Finally, this review ends with a concise conclusion and outlook of new trends in the development of TiO2-based photocatalysts.

参考文献

[1] J.G.Li;T.Ishigaki .[J].Acta Materialia,2004,52:5143.
[2] X.Bokhimi;A.Morales;E.Ortiz;T.Lopez;R.Gomez;J.Navarrete .Sulfate Ions in Titania Polymorphs[J].Journal of Sol-Gel Science and Technology,2004(1):31-40.
[3] K.N.P.Kumar;K.Keizer;A.J.Burggraaf .[J].Journal of Materials Chemistry,1993,3:1141.
[4] B.Hunsche;M.Verg6hl;A.Ritz .[J].Thin Solid Films,2006,502:188.
[5] D.Wicaksana;A.Kobayashi;A.Kinbara .[J].Journal of Vacuum Science and Technology A:Vacuum Surfaces and Films,1992,10:1479.
[6] R.R.Bacsa;M.Gratzel .[J].Journal of the American Ceramic Society,1996,79:2185.
[7] K.Okada;N.Yamamoto;Y.Kameshima;A.Yasumori K.J.D.MacKenzie .[J].Journal of the American Ceramic Society,2001,84:591.
[8] O.K.Varghese;D.W.Gong;M.Paulose;C.A.Grimes E.C.Dickey .[J].Journal of Materials Research,2003,18:156.
[9] U.Diebold .[J].Surface Science Reports,2003,48:53.
[10] G.V.Samsonov.The Oxide Handbook[M].New York:IFI/Plenum Press,1982:9.
[11] L.Gao;S.Zheng;Q.H.Zhang.Nano-titanium Dioxide Photocatalysis Materials and its Application[M].北京:化学工业出版社,2002:35.
[12] H.Tang;K.Prasad;R.Sanjinbs;P.E.Schmid F.Lévy .[J].Journal of Applied Physics,1994,75:2042.
[13] J.H.Braun;A.Baidins;R.E.Marganski .[J].Progress in organic Coatings,1992,20:105.
[14] K.Honda;A.Fujishima .[J].Nature,1972,238:37.
[15] A.Fujishima;D.A.Tryk;K.Honda.Photoelectrochemical Conversion[M].Springer,Tokyo,1999:196.
[16] B.O'Regan;M.Gratzel .[J].Nature,1991,353:737.
[17] M.Grétzel .[J].Inorganic Chemistry,2005,44:6841.
[18] S.N.Frank;A.J.Bard .[J].Journal of Physical Chemistry,1977,81:1484.
[19] A.L.Linsebigler;G.Q.Lu;J.T.Yates .[J].Chemical Reviews,1995,95:735.
[20] M.R.Hoffmann;S.T.Martin;W.Choi;D.W.Bahnemann .[J].Chemical Reviews,1995,95:69.
[21] Y.Hu;C.W.Yuan .[J].Journal of Materials Science and Technology,2006,22:239.
[22] H.F.Liu;X.N.Cheng;J.Yang;X.H.Yan H.B.Shi .[J].Journal of Materials Science and Technology,2007,23:123.
[23] A.Mills;S.K.Lee .[J].Journal of Photochemistry and Photobiology A:Chemistry,2002,152:233.
[24] R.Wang;K.Hashimoto;A.Fujishima;M.Chikuni E.Kojima A.Katamura M.Shimohigoshi T.Watanabe .[J].Nature,1997,388:431.
[25] R.Wang;K.Hashimoto;A.Fujishima;M.Chikuni E.Kojima A.Kitamura M.Shimohigoshi T.Watanabe .[J].Advanced Materials,1998,10:135.
[26] M.Nakamura;M.Kobayashi;N.Kuzuya;T.Komatsu T.Mochizuka .[J].Thin Solid Films,2006,502:121.
[27] A.Fujishima;T.N.Rao;D.A.Tryk .[J].Journal of Photochemistry and Photobiology C:Photochemistry Reviews,2000,1:1.
[28] K.Zakrzewska;M.Radecka;M.Rekas .[J].Thin Solid Films,1997,310:161.
[29] C.Garzella;E.Comini;E.Tempesti;C.Frigeri G.Sberveglieri .[J].Sensors and Actuators B:Chemical,2000,68:189.
[30] Y.Shimizu;T.Hyodo;M.Egashira .[J].Sensors and Actuators B:Chemical,2007,121:219.
[31] F.Zhang;Z.Zheng;Y.Chen;X.Liu A.Che Z.Jiang .[J].Journal of Biomedical Materials Research,1998,42:128.
[32] J.X.Liu;D.Z.Yang;F.Shi;Y.J.Cai .[J].Thin Solid Films,2003,429:225.
[33] S.Oh;S.Jin .[J].Materials Science and Engineering C:Biomimetic and Supramolecular Systems,2006,26:1301.
[34] H.C.Cheng;S.Y.Lee;C.C.Chen;Y.C.Shyng K.L.Ou .[J].Applied Physics Letters,2006,89:173902.
[35] Y.Matsumoto;M.Murakami;T.Shono;T.Hasegawa T.Fukumura M.Kawasaki P.Ahmet T.Chikyow S.Koshihara H.Koinuma .[J].Science,2001,291:854.
[36] D.H.Kim;J.S.Yang;K.W.Lee;S.D.Bu T.W.Noh S.J.Oh Y.W.Kim J.S.Chung H.Tanaka H.Y.Lee T.Kawai .[J].Applied Physics Letters,2002,81:2421.
[37] J.Y.Kim;J.H.Park;B.G.Park;H.J.Noh S.J.Oh J.S.Yang D.H.Kim S.D.Bu T.W.Noh H.J.Lin H.H.Hsieh C.T.Chen .[J].Physical Review Letters,2003,90:017401.
[38] R.Janisch;N.A.Spaldin .[J].Physical Review B,2006,73:035201.
[39] A.Hagfeldt;M.Gratzel .[J].Chemical Reviews,1995,95:49.
[40] J.M.Rehm;G.L.McLendon;Y.Nagasawa;K.Yoshihara J.Moser M.Gratzel .[J].Journal of Physical Chemistry,1996,100:9577.
[41] D.Chatterjee;A.Mahata .[J].Applied Catalysis B:Environmental,2001,33:119.
[42] D.Chatterjee;S.Dasgupta .[J].Journal of Photochemistry and Photobiology C:Photochemistry Reviews,2005,6:186.
[43] W.Choi;A.Termin;M.R.Hoffmann .[J].Journal of Physical Chemistry,1994,98:13669.
[44] K.Wilke;H.D.Breuer .[J].Journal of Photochemistry and Photobiology A:Chemistry,1999,121:49.
[45] M.I.Litter .[J].Applied Catalysis B:Environmental,1999,23:89.
[46] D.Dvoranová;V.Brezová;M.Mazdr;M.A.Malati .[J].Applied Catalysis B:Environmental,2002,37:91.
[47] R.Asahi;T.Morikawa;T.Ohwaki;K.Aoki Y.Taga .[J].Science,2001,293:269.
[48] C.D.Valentin;G.Pacchioni;A.Selloni .[J].Physical Review B,2004,70:085116.
[49] S.U.M.Khan;M.Al-Shahry;W.B.Ingler .[J].Science,2002,297:2243.
[50] T. Umebayashi;T. Yamaki;H. Itoh;K. Asai .Band gap narrowing of titanium dioxide by sulfur doping[J].Applied physics letters,2002(3):454-456.
[51] J.E.Evans;K.W.Springer;J.Z.Zhang .[J].Journal of Chemical Physics,1994,101:6222.
[52] K. VINODGOPAL;PRASHANT V. KAMAT .Enhanced Rates of Photocatalytic Degradation of an Azo Dye Using SnO_2/TiO_2 Coupled Semiconductor Thin Films[J].Environmental Science & Technology: ES&T,1995(3):841-845.
[53] M.D.Amiridis;J.P.Solart .[J].Industrial and Engineering Chemistry Research,1996,35:978.
[54] L.Y.Shi;C.Z.Li;H.C.Gu;D.Y.Fang .[J].Materials Chemistry and Physics,2000,62:62.
[55] W.K.Ho;J.C.Yu;J.Lin;J.G.Yu P.S.Li .[J].Langmuir,2004,20:5865.
[56] S.J.Wang;X.T.Zhang;G.Cheng;X.H.Jiang Y.C.Li Y.B.Huang Z.L.Du .[J].Chemical Physics Letters,2005,405:63.
[57] L.Wu;J.C.Yu;X.Z.Fu .[J].Journal of Molecular Catalysis A:Chemical,2006,244:25.
[58] J.G.Yu;J.C.Yu;W.K.Ho;Z.T.Jiang .[J].New Journal of Chemistry,2002,26:607.
[59] J.Sabate;M.A.Anderson;H.Kikkawa;M.Edwards C.G.Hill.Jr .[J].Journal of Catalysis,1991,127:167.
[60] K.Vinodgopal;S.Hotchandani;P.V.Kamat .[J].Journal of Physical Chemistry,1993,97:9040.
[61] J.A.Byrne;B.R.Eggins;N.M.D.Brown;B.Mickinney M.Rouse .[J].Applied Catalysis B:Environmental,1998,17:25.
[62] C.Guillard;B.Beaugiraud;C.Dutriez;J.M.Herrmann H.Jaffrezic N.Jaffrezic-Renault M.Lacroix .[J].Applied Catalysis B:Environmental,2002,39:331.
[63] Y.J.Chen;D.D.Dionysiou .[J].Applied Catalysis B:Environmental,2006,69:24.
[64] H.Choi;E.Stathatos;D.D.Dionysiou .[J].Applied Catalysis B:Environmental,2006,63:60.
[65] H.M.Yates;M.G.Nolan;D.W.Sheel;M.E.Pemble .The role of nitrogen doping on the development of visible light-induced photocatalytic activity in thin TiO_2 films grown on glass by chemical vapour deposition[J].Journal of Photochemistry and Photobiology, A. Chemistry,2006(1/2):213-223.
[66] J.C.Tao;Y.Shen;F.Gu;J.Z.Zhu J.C.Zhang .[J].Journal of Materials Science and Technology,2007,23:513.
[67] B.F.Xin;Z.Y.Ren;P.Wang;J.Liu L.Q.Jing H.G.Fu .[J].Application Surface Sinence,2007,253:4390.
[68] C.Adán;A.Bahamonde;M.Fernández-Garcia;A.Martinez-Arias .[J].Applied Catalysis B:Environmental,2007,72:11.
[69] S.Klosek;D.Raftery .[J].Journal of Physical Chemistry B,2001,105:2815.
[70] J.F.Zhu;Z.G.Deng;F.Chen;J.L.Zhang H.J.Chen M.Anpo J.Z.Huang L.Z.Zhang .[J].Applied Catalysis B:Environmental,2006,62:329.
[71] R.C.W.Lam;M.K.H.Leung;D.Y.C.Leung;L.L.P.Vrijmoed W.C.Yam S.P.Ng .[J].Solar Energy Materials and Solar Cells,2007,91:54.
[72] N.Venkatachalam;M.Palanichamy;B.Arabindoo;V.Murugesan .[J].Journal of Molecular Catalysis A:Chemical,2007,266:158.
[73] A.Di Paola;E.Garcia-López;S.Ikeda;G.Marci B.Ohtani L.Palmisano .[J].Catalysis Today,2002,75:87.
[74] V.Brezová;A.Blazková;L'.Karpinsky;J.Grosková B.Havlinová V.Jorik M.Ceppan .[J].Journal of Photochemistry and Photobiology A:Chemistry,1997,109:177.
[75] P.Bouras;E.Stathatos;P.Lianos .[J].Applied Catalysis B:Environmental,2007,73:51.
[76] M.Anpo;M.Takeuchi;K.Ikeue;S.Dohshi .[J].Current Opinion in Solid State and Materials Science,2002,6:381.
[77] M.Anpo;M.Takeuchi .[J].Journal of Catalysis,2003,216:505.
[78] M.Anpo;M.Takeuchi .[J].International Journal of Photoenergy,2001,3:89.
[79] K.Nagaveni;M.S.Hegde;G.Madras .[J].Journal of Physical Chemistry B,2004,108:20204.
[80] M. Casarin;C. Maccato;A. Vittadini .Electronic structure of Nb impurities in and on TiO_2[J].Physical chemistry chemical physics: PCCP,1999(16):3793-3799.
[81] T.Nishikawa;T.Nakajima;Y.Shinohara .[J].Journal of MOLECULAR STRUCTURE,2001,545:67.
[82] S.Karvinen;P.Hirva;T.A.Pakkanen .[J].Journal of Molecular Structure,2003,626:271.
[83] M.S.Park;S.K.Kwon;B.I.Min .[J].Physical Review B,2002,65:161201.
[84] T.Umebayashi;T.Yamaki;H.Itoh;K.Asai .[J].Journal of Physics and Chemistry of Solids,2002,63:1909.
[85] J.Premkumar .[J].CHEMISTRY OF MATERIALS,2004,16:3980.
[86] H.Irie;Y.Watanabe;K.Hashimoto .[J].Journal of Physical Chemistry B,2003,107:5483.
[87] X.B.Chen;C.Burda .[J].Journal of Physical Chemistry B,2004,108:15446.
[88] X.Chen;Y.B.Lou;A.C.S.Samia;C.Burda J.L.Gole .[J].Advanced Functional Materials,2005,15:41.
[89] T.Tachikawa;M.Fujitsuka;T.Majima .[J].Journal of Physical Chemistry C,2007,111:5259.
[90] S.K.Joung;T.Amemiya;M.Murabayashi;K.Itoh .[J].Applied Catalysis A:General,2006,312:20.
[91] O.Diwald;T.L.Thompson;T.Zubkov;Ed.G.Goralski S.D.Walck J.T.Yates Jr .[J].Journal of Physical Chemistry B,2004,108:6004.
[92] D.M.Chen;D.Yang;Q.Wang;Z.Y.Jiang .[J].Industrial and Engineering Chemistry Research,2006,45:4110.
[93] W.Zhao;W.H.Ma;C.C.Chen;J.C.Zhao Z.G.Shuai .[J].Journal of the American Chemical Society,2004,126:4782.
[94] M. Shen;Z. Wu;H. Huang .Carbon-doped anatase TiO_2 obtained from TiC for photocatalysis under visible light irradiation[J].Materials Letters,2006(5):693-697.
[95] Y.Choi;T.Umebayashi;M.Yoshikawa .[J].Journal of Materials Science,2004,39:1837.
[96] R.Hahn;A.Ghicov;J.Salonen;V.P.Lehto P.Schmuki .[J].Nanotechnology,2007,18:105604.
[97] T. Yamaki;T. Umebayashi;T. Sumita;S. Yamamoto;M. Maekawa;A. Kawasuso;H. Itoh .Fluorine-doping in titanium dioxide by ion implantation technique[J].Nuclear Instruments and Methods in Physics Research, Section B. Beam Interactions with Materials and Atoms,2003(0):254-258.
[98] S.N.Subbarao;Y.H.Yun;R.Kershaw;K.Dwight A.Wold .[J].Inorganic Chemistry,1979,18:488.
[99] W.Ho;J.C.Yu;S.Lee .[J].Chemical Communications,2006,10:1115.
[100] D.Li;H.Haneda;N.K.Labhsetwar;S.Hishita N.Ohashi .[J].Chemical Physics Letters,2005,401:579.
[101] J.C.Yu;J.G.Yu;W.K.Ho;Z.T.Jiang L.Z.Zhang .[J].Chemistry of Materials,2002,14:3808.
[102] L.Lin;W.Lin;Y.X.Zhu;B.Y.Zhao Y.C.Xie .[J].Chemistry Letters,2005,34:284.
[103] Q.Shi;D.Yang;Z.Y.Jiang;J.Li .[J].Journal of Molecular Catalysis B:Enzymatic,2006,43:44.
[104] T.Umebayashi;T.Yamaki;S.Tanaka;K.Asai .[J].Chemistry Letters,2003,32:330.
[105] T.Ohno;M.Akiyoshi;T.Umebayashi;K.Asai T.Mitsui M.Matsumura .[J].Applied Catalysis A:General,2004,265:115.
[106] T.Umebayashi;T.Yamaki;S.Yamamoto;A.Miyashita S.Tanaka T.Sumita K.Asai .[J].Journal of Applied Physics,2003,93:5156.
[107] Q.W.Zhang;J.Wang;S.Yin;T.Sato F.Saito .[J].Journal of the American Ceramic Society,2004,87:1161.
[108] S.Matsushima;K.Takehara;H.Yamane;K.Yamada H.Nakamura M.Arai K.Kobayashi .[J].Journal of Physics and Chemistry of Solids,2007,68:206.
[109] G.Liu;Z.G.Chen;C.L.Dong;Y.N.Zhao F.Li G.Q.Lu H.M.Cheng .[J].Journal of Physical Chemistry B,2006,110:20823.
[110] M.C.Long;W.M.Cai;Z.P.Wang;G.Z.Liu .[J].Chemical Physics Letters,2006,420:71.
[111] X.T.Hong;Z.P.Wang;W.M.Cai;F.Lu J.Zhang Y.Z.Yang N.Ma Y.J.Liu .[J].Chemistry of Materials,2005,17:1548.
[112] S.Sato .[J].Chemical Physics Letters,1986,123:126.
[113] T.Morikawa;R.Asahi;T.Ohwaki;K.Aoki Y.Taga .[J].Japanese Journal of Applied Physics,2001,40:L561.
[114] S.Sakthivel;M.Janczarek;H.Kisch .[J].Journal of Physical Chemistry B,2004,108:19384.
[115] C.D.Valentin;G.Pacchioni;A.Selloni;S.Livraghi E.Giamello .[J].Journal of Physical Chemistry B,2005,109:11414.
[116] T.Lindgren;J.M.Mwabora;E.Avendano;J.Jonsson A.Hoel C.G.Granqvist S.E.Lindquist .[J].Journal of Physical Chemistry B,2003,107:5709.
[117] V.N.Kuznetsov;N.Serpone .[J].Journal of Physical Chemistry B,2006,110:25203.
[118] N.Serpone .[J].Journal of Physical Chemistry B,2006,110:24287.
[119] H.Wang;J.P.Lewis .[J].Journal of Physics:Condensed Matter,2006,18:421.
[120] G.S.Wu;T.Nishikawa;B.Ohtani;A.C.Chen .[J].Chemistry of Materials,2007,19:4530.
[121] C.D.Valentin;G.Pacchioni;A.Selloni .[J].Chemistry of Materials,2005,17:6656.
[122] J.Y.Lee;J.Park;J.H.Cho .[J].Applied Physics Letters,2005,87:011904.
[123] H.Kamisaka;T.Adachi;K.Yamashita .[J].Journal of Chemical Physics,2005,123:084704.
[124] J.G.Yu;J.C.Yu;B.Cheng;S.K.Hark K.Iu .[J].Journal of Solid State Chemistry,2003,174:372.
[125] H.Geng;S.W.Yin;X.Yang;Z.G.Shuai B.G.Liu .[J].Journal of Physics:Condensed Matter,2006,18:87.
[126] J.C.Yu;L.Z.Zhang;Z.Zheng;J.C.Zhao .[J].Chemistry of Materials,2003,15:2280.
[127] L.Khrhsi;I.Dékány .[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects,2006,280:146.
[128] D.Li;H.Haneda;S.Hishita;N.Ohashi .[J].Chemistry of Materials,2005,17:2588.
[129] D.Li;H.Haneda;S.Hishita;N.Ohashi .[J].Chemistry of Materials,2005,17:2596.
[130] D.Li;N.Ohashi;S.Hishita;T.Kolodiazhnyi H.Haneda .[J].Journal of Solid State Chemistry,2005,178:3293.
[131] D.G.Huang;S.J.Liao;J.M.Liu;Z.Dang L.Petrik .[J].Journal of Photochemistry and Photobiology A:Chemistry,2006,184:282.
[132] J.G.Yu;M.H.Zhou;B.Cheng;X.J.Zhao .[J].Journal of Molecular Catalysis A:Chemical,2006,246:176.
[133] Y.Cong;F.Chen;J.L.Zhang;M.Anpo .[J].Chemistry Letters,2006,35:800.
[134] D.M.Chen;Z.Y.Jiang;J.Q.Geng;Q.Wang D.Yang .[J].Industrial and Engineering Chemistry Research,2007,46:2741.
[135] H.M.Luo;T.Takata;Y.G.Lee;J.F.Zhao K.Domen Y.S.Yan .[J].CHEMISTRY OF MATERIALS,2004,16:846.
[136] Y.Cong;J.L.Zhang;F.Chen;M.Anpo D.N.He .[J].Journal of Physical Chemistry C,2007,111:10618.
[137] N.Negishi;T.Iyoda;K.Hashimoto;A.Fujishima .[J].Chemistry Letters,1995,9:841.
[138] Y.Y.Xiong;T.Ma;L.H.Kong;J.F.Chen X.Q.Wu H.H.Yu Z.X.Zhang .[J].Journal of Materials Science and Technology,2006,22:353.
[139] M.Bockmeyer;P.L5bmann .[J].Chemistry of Materials,2006,18:4478.
[140] M.Maeda;S.Yamasaki .[J].Thin Solid Films,2005,483:102.
[141] N.P.Mellott;C.Durucan;C.G.Pantano;M.Guglielmi .[J].Thin Solid Films,2006,502:112.
[142] J.G.Yu;X.J.Zhao;Q.N.Zhao .[J].Thin Solid Films,2000,379:7.
[143] J.C.Yu;J.G.Yu;J.C.Zhao .[J].Applied Catalysis B:Environmental,2002,36:31.
[144] H.Nagayama;H.Honda;H.Kawahara .[J].Journal of the Electrochemical Society,1988,135:2013.
[145] H.Kishimoto;K.Takahama;N.Hashimoto;Y.Aoi S.Deki .[J].Journal of Materials Chemistry,1998,8:2019.
[146] X.P.Wang;Y.Yu;X.F.Hu;L.Gao .[J].Thin Solid Films,2000,371:148.
[147] J.G.Yu;H.G.Yu;B.Cheng;X.J.Zhao J.C.Yu W.K.Ho .[J].Journal of Physical Chemistry B,2003,107:13871.
[148] A.Dutschke;C.Diegelmann;P.Lobmann .[J].Journal of Materials Chemistry,2003,13:1058.
[149] S.Deki;S.Iizuka;M.Mizuhata;A.Kajinami .[J].Journal of Electroana Chemistry,2005,584:38.
[150] J.G.Yu;H.G.Yu;C.H.Ao;S.C.Lee J.C.Yu W.K.Ho .[J].Thin Solid Films,2006,496:273.
[151] D.Gutierrez-Tauste;X.Domenech;N.Casan-Pastor;J.A.Ayllon .[J].Journal of Photochemistry and Photobiology A:Chemistry,2007,187:45.
[152] M.K.Lee;J.J.Huang;C.F.Yen .[J].Journal of the Electrochemical Society,2007,154:117.
[153] G.A.Battiston;R.Gerbasi;M.Porchia;A.Marigo .[J].Thin Solid Films,1994,239:186.
[154] A.Borrás;C.López;V.Rico;F.Gracia A.R.GonzólezElipe E.Richter G.Battiston R.Gerbasi N.McSporran G.Sauthier E.Gyhgy A.Figueras .[J].Journal of Physical Chemistry C,2007,111:1801.
[155] F.K.Lee;G.Andreatta;J.J.Benattar .[J].Applied Physics Letters,2007,90:181928.
[156] H.Y.Lee;Y.H.Park;K.H.Ko .[J].Langmuir,2000,16:7289.
[157] B.C.Kang;S.B.Lee;J.H.Boo .[J].Surface and Coatings Technology,2000,131:88.
[158] D.J.Won;C.H.Wang;H.K.Jang;D.J.Choi .[J].Applied Physics A,2001,73:595.
[159] C.K.Jung;B.C.Kang;H.Y.Chae;Y.S.Kim M.K.Seo S.K.Kim S.B.Lee J.H.Boo Y.J.Moon J.Y.Lee .[J].Journal of Crystal Growth,2002,235:450.
[160] M.Kang;J.H.Lee;S.H.Lee;C.H.Chung K.J.Yoon K.Ogino S.Miyata S.J.Choung .[J].Journal of Molecular Catalysis A:Chemical,2003,193:273.
[161] G. A. Battiston;R. Gerbasi;A. Gregori;M. Porchia;S. Cattarin;G. A. Rizzi .PEVCD of amorphous TiO{sub}2 thin films: effect of growth temperature and plasma gas composition[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2000(1/2):126-131.
[162] J.M.Mwabora;T.Lindgren;E.Avendafio;T.F.Jaramillo J.Lu S.E.Lindquist C.G.Granqvist .[J].Journal of Physical Chemistry B,2004,108:20193.
[163] L.J.Meng;V.Teixeira;H.N.Cui;F.Placido Z.Xu M.P.dos Santos .[J].Application Surface Sinence,2006,250:7970.
[164] L.J.Meng;M.Andritschky;M.P.dos Santos .[J].Application Surface Sinence,1993,65-66:235.
[165] L.J.Meng;M.Andritschky;M.P.dos Santos .[J].Thin Solid Films,1993,223:242.
[166] L.J.Meng;M.P.dos Santos .[J].Thin Solid Films,1993,226:22.
[167] Y.Nakano;T.Morikawa;T.Ohwaki;Y.Taga .[J].Applied Physics Letters,2005,86:132104.
[168] D. Guerin;S. Ismat Shah .Reactive-sputtering of titanium oxide thin films[J].Journal of Vacuum Science & Technology, A. Vacuum, Surfaces, and Films,1997(3 Pt.1):712-715.
[169] S.Z.Chen;P.Y.Zhang;D.M.Zhuang;W.P.Zhu .[J].Catalysis Communications,2004,5:677.
[170] C.J. Tavares;J. Vieira;L. Rebouta .Reactive sputtering deposition of photocatalytic TiO_2 thin films on glass substrates[J].Materials Science & Engineering, B. Solid-State Materials for Advanced Technology,2007(2):139-143.
[171] M.Kitano;K.Funatsu;M.Matsuoka;M.Ueshima M.Anpo .[J].Journal of Physical Chemistry B,2006,110:25266.
[172] J.O. Carneiro;V. Teixeira;A. Portinha .Iron-doped photocatalytic TiO_2 sputtered coatings on plastics for self-cleaning applications[J].Materials Science & Engineering, B. Solid-State Materials for Advanced Technology,2007(2):144-150.
[173] Y.Cui;H.Du;S.W.Lee;C.Sun L.S.Wen .[J].Materials Science Forum,2007,544-545:27.
[174] Y.Cui;H.Du;J.Q.Xiao;L.S.Wen .[J].Journal of Materials Science and Technology,2008,24:172.
[175] L. Sirghi;T. Aoki;Y. Hatanaka .Hydrophilicity of TiO_2 thin films obtained by radio frequency magnetron sputtering deposition[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2002(1/2):55-61.
[176] M.Yamagishi;S.Kuriki;P.K.Song;Y.Shigesata .[J].Thin Solid Films,2003,442:227.
[177] L.S.Wen;R.F.Huang .[J].Surface and Coatings Technology,2005,193:1.
[178] M.Zhang;G.Q.Lin;C.Dong;L.S.Wen .[J].Surface and Coatings Technology,2007,201:7252.
[179] J.T.Chang;C.W.Su;J.L.He .[J].Surface and Coatings Technology,2006,200:3027.
[180] J.T.Chang;Y.F.Lai;J.L.He .[J].Surface and Coatings Technology,2005,200:1640.
[181] H.Yumoto;S.Matsudo;K.Akashi .[J].Vacuum,2002,65:509.
[182] A. Bendavid;P. J. Martin;H. Takikawa .Deposition and modification of titanium dioxide thin films by filtered arc deposition[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2000(1/2):241-249.
[183] P. J. Martin;A. Bendavid .Review of the filtered vacuum arc process and materials deposition[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2001(1/2):1-15.
[184] M. D. Huang;Y. P. Lee;C. Dong;G. Q. Lin;C. Sun;L. S. Wen .Preparation of TiN films by arc ion plating using dc and pulsed biases[J].Journal of Vacuum Science & Technology, A. Vacuum, Surfaces, and Films,2004(2):250-254.
[185] B.K. Tay;Z.W. Zhao;D.H.C. Chua .Review of metal oxide films deposited by filtered cathodic vacuum arc technique[J].Materials Science & Engineering, R. Reports: A Review Journal,2006(1/3):1-48.
[186] Z.W.Zhao;B.K.Tay .[J].Journal of Applied Physics,2007,101:013505.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%