The inhibitory effect of phosphate on the crystal grain growth of nanosized titania during high temperature calcination was investigated. Nanosized titanium dioxide powders prepared by hydrolysis of titanium tetrachloride were soaked in phosphate solutions with different con-centrations. The obtained powders calcined at various temperatures were characterized by X-ray diffraction (XRD), Fourier transform infra-red spectroscopy (FTIR), and X-ray photoelectronic spectroscopy (XPS). The grain size of the samples without phosphate treatment in-creased quickly when calcined at high temperatures, while the grain size of the samples with phosphate modification increased slowly when calcined at the same temperature. This phenomenon implies that phosphate treatment plays an important role in inhibiting the crystal grain growth of titania. The possible mechanism of the inhibition effect of phosphate on titania is discussed.
参考文献
[1] | Coulter KE.;Sault AG. .EFFECTS OF ACTIVATION ON THE SURFACE PROPERTIES OF SILICA-SUPPORTED COBALT CATALYSTS[J].Journal of Catalysis,1995(1):56-64. |
[2] | Fujishima A;Honda K .Electrochemical photolysis of water at a semiconductor electrode[J].Nature,1972,238:37. |
[3] | Yeh Y C;Tseng T Y;Chang D A .Electrical properties of porous titania ceramic humidity sensors[J].Journal of the American Ceramic Society,1989,72(08):1472. |
[4] | Ketrom L .Ceramic sensors[J].American Ceramic Society Bulletin,1989,68:860. |
[5] | O'Regan B;Gratzel M .A low-cost,high-efficiency solar cell based on dye-sensitized colloidal TiO2[J].Nature,1991,353:737. |
[6] | Liu Y;Claus R O .Blue light emitting nanosizod TiO2 colloids[J].Journal of the American Chemical Society,1997,119(24):5723. |
[7] | Legrini O;Oliveros E;Braun A M .Photochemical processes for water treatment[J].Chemical Reviews,1993,93(02):671. |
[8] | Zheng LY.;Xu TX.;Xu MX. .TiO2-x thin films as oxygen sensor[J].Sensors and Actuators, B. Chemical,2000(1/3):28-30. |
[9] | Ferroni M;Guidi V;Maxtinelli G;Faglia G,Nelli P,Sberveglieri G .Characterization of a nanosized TiO2 gas sensor[J].Nano-Structured Materials,1996,7(07):709. |
[10] | Takao Y;Fukuda K;Shimizu Y;Egashira M .Trimethylamine-sensing mechanism of TiO2-based sensors 2.Effects of catalytic activity of TiO2-based specimens on their trimethylamine-sensing properties[J].Sensors and Actuators B:Chemical,1993,10(03):235. |
[11] | Blake D M;Webb J;Turehi C;Magrini K .Kinetic and mechanistic overview of TiO2-photocatalyzed oxidation reactions in aqueous solution[J].Solar Energy Materials,1991,24(04):584. |
[12] | Rao N N;Dube S .Photocatalytic degradation of mixed suffactants and some commercial soap/detergent products us-ing suspended TiO2 catalysts[J].Journal of Molecular Catalysis A:Chemical,1996,104(03):L197. |
[13] | Thammanoon Sreethawong;Yoshikazu Suzuki;Susumu Yoshikawa .Photocatalytic evolution of hydrogen over nanocrystalline mesoporous titania prepared by surfactant-assisted templating sol-gel process[J].Catalysis Communications,2005(2):119-124. |
[14] | Kumar S;Fedorov AG;Gole JL .Photodegradation of ethylene using visible light responsive surfaces prepared from titania nanoparticle slurries[J].Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications,2005(2):93-107. |
[15] | Bskardjieva S;Subrt J;Stengl V;Dianez M.J,Sayagues M.J .Photoactivity of anatase-mtile TiO2 nanocrystalline mixtures obtained by heat treatment of homogeneously precipitated anatase[J].Applied Catalysis B:Environmental,2005,58(03):193. |
[16] | Peiro A M;Petal J;Domingo C;Domenech X,Ayllon J.A .Low-temperature deposition of TiO2 thin films with photocatalytic activity from colloidal anatase aqueous solutions[J].CHEMISTRY OF MATERIALS,2001,13(08):2567. |
[17] | Korosi L;Papp S;Meynen V;Cool P,Vansant E.F,Dékány I .Preparation and characterization of SnO2 nanoparticles of enhanced thermal stability:The effect of phosphoric acid treatment on SnO2.nH2O[J].Colloids and Surfaces A:Physicochemical and Engineering Aspects,2005,268(03):147. |
[18] | Yu JC.;Zhang LZ.;Zheng Z.;Zhao JC. .Synthesis and characterization of phosphated mesoporous titanium dioxide with high photocatalytic activity[J].Chemistry of Materials,2003(11):2280-2286. |
[19] | Lin L;Lin W;Xie J L;Zhu Y.X,Zhao B.Y,Xie Y.C .Photocatalytic properties of phosphor-doped titania nanoparticles[J].Applied Catalysis B:Environmental,2007,75(01):52. |
[20] | Samantaray S K;Parida K .Studies on anion-promoted titania:3.Effect of concentration and source of phosphate ion,method of preparation,and activation temperature on redox,acid-base,textural and catalytic properties of titania[J].Journal of Molecular Catalysis A:Chemical,2001,176(02):151. |
[21] | Parida KM.;Pattnayak PK. .STUDIES ON PO4 (3-)/ZRO2 .1. EFFECT OF H3PO4 ON TEXTURAL AND ACIDIC PROPERTIES OF ZRO2[J].Journal of Colloid and Interface Science,1996(2):381-387. |
[22] | Gao Y F;Masuda Y;Seo W S;Ohta H,Koumoto K .TiO2 nanoparticles prepared using an aqueous peroxotitanate solution[J].Ceramics International,2004,30:1365. |
[23] | Sullivan W F;Cole S S .Thermal chemistry of colloidal titanium dioxide[J].Journal of the American Ceramic Society,1959,42(03):127. |
[24] | Turnbull D .Phase Changes[J].Solid State Physics Advances in Research and Applications,1956,3:225. |
[25] | Li BR.;Wang XH.;Yan MY.;Li LT. .Preparation and characterization of nano-TiO2 powder[J].Materials Chemistry and Physics,2003(1):184-188. |
[26] | Jones P;Hockey J A .Infrared studies of ruffle surfaces:Part 2.Hydroxylation,hydration and structure of ruffle surfaces[J].Transactions of the Faraday Society,1971,67:2679. |
[27] | Asim Bhaumik;Shinji Inagaki .Mesoporous Titanium Phosphate Molecular Sieves with Ion-Exchange Capacity[J].Journal of the American Chemical Society,2001(4):691-696. |
[28] | Alfaya AAS.;de Castro SC.;Gushikem Y. .Highly dispersed phosphate supported in a binary silica-titania matrix: Preparation and characterization[J].Chemistry of Materials,1998(3):909-913. |
[29] | Yu JC.;Zhang LZ.;Zheng Z.;Zhao JC. .Synthesis and characterization of phosphated mesoporous titanium dioxide with high photocatalytic activity[J].Chemistry of Materials,2003(11):2280-2286. |
[30] | Baunack S.;Scharnweber D.;Oswald S. .Depth distribution and bonding states of phosphorus implanted in titanium investigated by AES, XPS and SIMS[J].Surface and Interface Analysis: SIA: An International Journal Devoted to the Development and Application of Techniques for the Analysis of Surfaces, Interfaces and Thin Films,1998(6):471-479. |
[31] | Splinter SJ;Rofagha R;Mcintyre N S;Erb U .XPS characterization of the corrosion films formed on nanocrystalline Ni-P alloys in sulphuric acid[J].Surface and Interface Analysis,1996,24(03):181. |
- 下载量()
- 访问量()
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%