期刊文献+

TiO_2纳米管阵列的制备及其光催化效率研究

Study on preparation and photocatalytic efficiency of TiO_2 nanotube array
在线阅读 下载PDF
导出
摘要 以质量分数(下同)0.3%NH4F+ethylene glycol+1%H2O为电解液采用阳极氧化法制备了TiO2纳米管,研究了阳极氧化时间和退火温度对TiO2纳米管表面形貌、晶体结构和光催化效率的影响,比较了不同电解液制备的TiO2纳米管和溶胶凝胶法制备的TiO2薄膜的光催化效率.应用X射线衍射(XRD)和场发射扫描电镜(FESEM)对TiO2纳米管的形貌和结构进行了分析.结果表明:在阳极氧化恒电压50 V、阳极氧化48 h、450℃退火4 h条件下制备的TiO2纳米管具有最高的光催化效率,其光催化效率明显高于溶胶凝胶法制备的TiO2薄膜(4.4倍),也高于0.5%HF电解液和弱酸水溶性电解液(0.5%HF+1 mol/L NH4H2PO4)制备的TiO2纳米管的光催化效率. TiO2 nanotubes are prepared by anodic oxidation method with electrolyte comprised of water, NH4F, and ethylene glycol (mass fraction, same below, 0. 3 % NH4 F+ ethylene glycol+ 1% H2 O). The influences of anodic time and annealing temperature on surface morphology, crystal structure and photocatalytic efficiency of TiO2 nanotubes are investigated, and the photocatalytic efficiencies of TiO2 nanotubes and films which are prepared by different electrolyzing solution and sol-gel method are compared. The morphology and crystalline phase of TiO2 nanotuhes are analyzed by FESEM and XRD. The results show that TiOz nanotuhes with anodizing voltage of 50 V for 48 h and annealed at 450 ℃ for 4 h possess the optimal photocatalytic efficiency which is not only much higher than that of the TiO2 film prepared by sol-gel method (4.4 times), but also much higher than that of the TiO2 nanotubes prepared by electrolyte of 0.5M HF and weakly acidic water-solubility electrolyte (0. 5% HF+ 1 mol/L NH4 H2 PO4 ).
出处 《天津师范大学学报(自然科学版)》 CAS 北大核心 2009年第4期32-37,共6页 Journal of Tianjin Normal University:Natural Science Edition
基金 国家自然科学基金(50872093) 天津市高等学校科技发展基金项目(20070508)
关键词 TIO2纳米管 阳极氧化 弱酸有机含氟电解液 光催化效率 TiO2 nanotube anodic oxidation weakly acidic fluoride-base organic electrolyte photocatalytic efficiency
  • 相关文献

参考文献24

  • 1Carp O, Huisman C L, Relier A. Photoindueed reactivity of titanium dioxide[J]. Prog Solid State Chem, 2004, 32:33- 177.
  • 2Gopal K M, Oomman K V, Maggie P, et al. A review on highly ordered, vertically oriented TiO2 nanotube arrays: Fabrication, material properties, and solar energy applications[J]. Solar energy materials & solar cell, 2006, 90: 2011- 2075.
  • 3Chen X B, Samuel S M. Titanium dioxide nanomaterials: Synthesis, properties, modifications, and applications[J]. Chem Rev, 2007, 107:. 2891-2959.
  • 4Tan T T Y, Yip C K, Beydoun D, et al. Effects of nano-Ag particles loading on TiO2 Photocatalytic reduction of selenate ions[J]. Chem. EngJ 2003, 95:179 - 186.
  • 5Sung-Suh H M, Choi J R, Hah H J, et al. Comparison of Ag deposition effects on the photocatalytic activity of nanoparticulate TiO2 under visible and UV light irradiation[J]. J Photochem Photobio A, 2004, 163: 37-44.
  • 6Rupa A V, Manikandan D, Divakar D, et al. Effect of deposition of Ag on TiO2 nanoparticles on the photodegradation of Reactive Yellow-17[J]. J Hazard Mater, 2007, 147: 906- 913.
  • 7Liu J J, Li X P, Zuo S L, et al. Preparation and photoeatalytie activity of silver and TiO2 nanoparticles/montmorillonite composites[J]. Appl Clay Sci, 2007, 37: 275-280.
  • 8Seery M K, George R, Floris P, et al. Silver doped titanium dioxide nanomaterials for enhanced visible light photocatalysis [J]. J Photochem Photobio A, 2007, 189: 258- 263.
  • 9Armelao L, Barreca D, Bottaro G, et al. Au/TiO2 Nanosystems: A combined RF-sputtering/Sol-Gel approach[J]. Chem Mater, 2004, 16: 3331- 3338.
  • 10Li F B, Li X Z. The enhancement of photodegradation efficiency using Pt-TiO2 catalyst chemosphere[J]. 2002, 48: 1103 - 1111.

二级参考文献45

共引文献34

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部