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Effect of Ethanol on Synthesis and Electrochemical Property of Mesoporous Al-doped Titanium Dioxide via Solid-state Reaction 被引量:1

Effect of Ethanol on Synthesis and Electrochemical Property of Mesoporous Al-doped Titanium Dioxide via Solid-state Reaction
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摘要 Mesoporous aluminum-doped titanium dioxide(Al-TiO2) materials with high specific surface areas were prepared via a solid-state reaction route.The properties of these materials were characterized by X-ray diffraction(XRD),high resolution transmission electron microscopy(HRTEM),energy dispersive spectroscopy(EDS),N2 absorption-desorption,ultraviolet visible light spectroscopy(UV-Vis) and electrochemical spectroscopy.The results show that the mesoporous structure of the product with ethanol is composed of anatase laced crystal walls with amorphous grain boundaries formed gradually by degradation.Compared with those without ethanol,these samples possess larger crystallite size since ethanol decreases the pore size at higher temperature.With the increase of ethanol amount,however,the crystallite size will grow.The amorphous grain boundaries in the mesoporous material,with a large impedance and low incidental cyclic potential,are difficult to effectively degrade and the phase transformation temperature is changed from 500 to 550℃.The growth rate of Al-TiO2 crystallites that obeys the quadratic polynomial equation may be controlled. Mesoporous aluminum-doped titanium dioxide(Al-TiO2) materials with high specific surface areas were prepared via a solid-state reaction route.The properties of these materials were characterized by X-ray diffraction(XRD),high resolution transmission electron microscopy(HRTEM),energy dispersive spectroscopy(EDS),N2 absorption-desorption,ultraviolet visible light spectroscopy(UV-Vis) and electrochemical spectroscopy.The results show that the mesoporous structure of the product with ethanol is composed of anatase laced crystal walls with amorphous grain boundaries formed gradually by degradation.Compared with those without ethanol,these samples possess larger crystallite size since ethanol decreases the pore size at higher temperature.With the increase of ethanol amount,however,the crystallite size will grow.The amorphous grain boundaries in the mesoporous material,with a large impedance and low incidental cyclic potential,are difficult to effectively degrade and the phase transformation temperature is changed from 500 to 550℃.The growth rate of Al-TiO2 crystallites that obeys the quadratic polynomial equation may be controlled.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2011年第4期674-681,共8页 中国化学工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China (21061006) the Research of Natural Science and Technology Foundation of Guizhou Province ([2010]2006) the Graduate Scientific Innovation Project of Education Department of Guangxi Autonomous Region (1059330901009)
关键词 二氧化钛 介孔结构 乙醇 AL掺杂 反应合成 固态 高分辨透射电子显微镜 电化学 mesoporous material Al-doped TiO 2 solid-state reaction ethanol electrochemical property
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  • 1Brown S P, Schnell I, Brand J D, et al. An investigation of packing in a columnar hexabenzocoronene by fast magicangle spinning and double-quantum 1H solid-state NMR spectroscopy[Jl. J Am Chem Soc, 1999, 121 (28) :6712-6718.
  • 2McMahon C A, Hawrylak B, Palepu R. Calorimetric and NMR investigations of the micellar properties of sodium dodecyl sulfate in aqueous mixtures of isomeric butanediols[J]. Langmuir, 1999, 15(2): 429-436.
  • 3Markey L, Stievenard D, Devos A, et al. STM observations of self-assembled 1D and 2D nanoclusters of aromatic cryptand molecules deposited on highly oriented pyrolytic graphite [ J ]. Supramole Science, 1997, 4 (3/4) :375-379.
  • 4Huang Yaoxiong, Tan Runchu, Li Yonglong, et al. Effect of salts on the formation of C8-lecithin micelles in aqueous solution [ J ]. J Colloid and Interface Sci, 2001, 236 ( 1 ) :28-34.
  • 5Miguel M G, Burrows H D, Formosinho S J, et al. Fluorescence studies of polymer-surfactant association [ J ]. J Mol Struct, 2001, 563( 1 ) : 89-98.
  • 6Lam Y M, Goldbeck-Wood G. Mesoscale simulation of block copolymers in aqueous solution: Parameterisation, micelle growth kinetics and the effect of temperature and concentration morphology[ Jl. Polymer, 2003, 44(12) :3593-3605.
  • 7Hansson P, Schneider S, Lindman B. Phase separation in polyelectrolyte gels interacting with surfactants of opposite charge[J]. J Phys Chem B, 2002, 106(38) :9777-9793.
  • 8Claesson P M, Fielden M L. Interactions between a 30 charged polyelec trolyte and an anionic surfactant in bulk and at a solid-liquid interface[Jl. J Phys Chem B, 1998,102(7) : 1270-1278.
  • 9Groot R D. Mesoscopic simulation of polymer-surfactant aggregation [ J ]. Langmuir, 2000, 16 ( 19 ) :7493-7502.
  • 10Asefa T, Maclachian M J, Coombs N, et al. Periodic mesoporous organosilicas with organic groups inside the channel walls[J]. Nature, 1999, 402(6764) :867-881.

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