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碳掺杂氧化钛介孔材料的合成与吸附降解性能 被引量:3

SYNTHESIS AND PHOTO-DEGRADATION PROPERTIES OF C-DOPING MESOPOROUS TITANIUM DIOXIDE
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摘要 采用溶剂挥发诱导自组装法,以非离子表面活性剂P123为结构导向剂,钛酸四丁酯为钛源,酚醛树脂预聚体为添加剂,制备了碳掺杂氧化钛介孔材料,采用焙烧方式去除其中的碳,获得纯的TiO2介孔材料。采用XRD、SEM、TEM、N2吸附-脱附等方法对所合成产物进行了表征。结果表明,添加酚醛树脂预聚体可获得结构良好的碳掺杂氧化钛介孔材料,除去碳之后得到的TiO2材料保留了前者的良好介孔结构。对染料结晶紫的吸附降解性能研究表明,碳掺杂氧化钛介孔材料具有显著吸附性能,而纯TiO2介孔材料表现出优良的吸附降解性能。 Carbon-doping mesoporous titanium dioxide was prepared by evaporation-induced selfassembly method (EISA) with non-ionic surfactant P123 as structure directing agent, tetrabutyl titanate as titanium source and phenolic resin as additive. Succedently, mesoporous titanium dioxide could be obtained by calcining C-doping mesoporous titanium dioxide in ambient air. The prepared samples were characterized via XRD, SEM, TEM and N2 adsorption-desorption isotherms. The results indicated that C-doping titanium dioxide with worm-like mesoporous structure could be acquired by adding phenolic resin as additive and carbon source. The analysis on the adsorption and photo-degradation of dye-methyl violet revealed that C-doping mesoporous titanium dioxides possessed excellent adsorption properties while mesoporus TiO2 showed good adsorption and photo-degradation properties.
出处 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2009年第A02期32-36,共5页 Acta Petrolei Sinica(Petroleum Processing Section)
基金 国家自然科学基金项目(50772085) 国家自然科学基金国际合作(中-澳)项目(50911120025)资助
关键词 碳掺杂 氧化钛介孔材料 吸附 光降解 钛源 carbon-doping mesoporous titanium dioxide adsorb photo-degradation titanium source
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  • 1LIU R, REN Y, ZHAO D, et al. Controlled synthesis of ordered mesoporous C-TiO2 nanocomposites with crystalline titania frameworks from organic-inorganic- amphiphilic eoassembly[J]. Chem Mater, 2008, 20:1140.
  • 2HAO H, ZHANG ,1. Low temperature synthesis of crystalline mesoporous titania with high photocatalytic activity by post-treatment in nitric acid ethanol solution [J]. Mater Lett, 2009, 63: 106.
  • 3JIA N, WEN Y, SHEN H, et al. Direct electrochemistry and enzymatic activity of hemoglobin immobilized in ordered mesoporous titanium oxide matrix[J]. Eleetrochem Commun, 2008, 10: 774.
  • 4HUANG D, WANG Y J, LUO G S, et al. Direct synthesis of mesoporous TiO2 and its catalytic performance in DBT oxidative desulfurization [J]. Microporous Mesoporous Mater, 2008, 116: 378.
  • 5DEVI G SARALA, HYODO TAKEO, MAKOTO EGASHIRA, et al. Synthesis of mesoporous TiO2- based powders and their gas-sensing properties [J].Sens Actuators B, 2002, 87: 122.
  • 6LIY Z, ZHANG H, ZHAO X J, et al. Highly efficient visible-light-induced photocatalytic activity of nanostructured AgI/TiO2 photocatalyst[J]. Langmuir, 2008, 24: 8351.
  • 7SING K S W, EVERETT D H, HAUL R A W, et al. Reporting physisorption data for gas/ solid systems with special reference to determination of surface area and porosity[J].Pure Appl Chem, 1985, 57: 603.
  • 8YU J G, ZHOU M H, ZHAO X J, et al. Ultrasonic preparation of mesoporous titanium dioxide nanocrystalline photocatalysts and evaluation of photocatalytic activity [J].J Mol Catal A, Chem, 2005, 227: 75.
  • 9ZHOU M H, YU hydrolytic synthesis anatase nanospheres of toluene in air[J]. J G, LIU S W, et al. Spray- of highly photoactive mesoporous for the photocatalytic degradation Appl Catal B, 2009, 89.. 160.
  • 10YU J G, ZHOU M H, X J ZHAO, et al. Preparation, characterization and photocatalytic of in situ N, S- codoped TiO2 powders[J]. J Mol Catal A, 2006, 246: 176.

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