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Enhanced photocatalytic activity of Fe-doped ZnO nanoparticles synthesized via a two-step sol-gel method

机译:两步溶胶-凝胶法合成的Fe掺杂的ZnO纳米粒子的光催化活性增强

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摘要

A series of Zn_(1-x)Fe_xO (x - 0, 1, 2, 3, 4 %) powders via a two-step sol-gel method in open system were successfully fabricated. Influence of Fe doping concentration on the structure, morphology, optical properties and photo catalysis properties were investigated by means of X-ray diffraction, scanning electron microscopy, UV-Vis spectrophotometer and photochemical reaction instrument. The results showed that the ZnO powders were hexagonal wurtzite structures and their crystalline sizes and particle diameters decreased with the increase of Fe doping concentration. An increase of visible light absorption value and a decrease in band gap from 3.219 to 3.167 eV were found with the increase of Fe doping concentration, which enable the sample harvest more photons to excite the electron from the valence. Enhanced visible light induced photocatalytic activity has been found in Fe doped ZnO and the ultraviolet light induced photocatalytic properties of the Fe-doped ZnO have been improved greatly compared with undoped ZnO and commercially available TiO_2 (P25). The photocatalytic activities were not significantly affected by the particle size, and the best Fe doping concentration is 1 %.
机译:在开放系统中,通过两步溶胶-凝胶法成功制备了一系列Zn_(1-x)Fe_xO(x-0、1、2、3、4%)粉末。通过X射线衍射,扫描电镜,紫外可见分光光度计和光化学反应仪等手段研究了铁掺杂浓度对结构,形貌,光学性能和光催化性能的影响。结果表明,ZnO粉末为六方纤锌矿结构,随着Fe掺杂浓度的增加,其晶粒尺寸和粒径减小。随着Fe掺杂浓度的增加,可见光吸收值增加,带隙从3.219eV减小到3.167eV,这使样品能够收获更多的光子,从而激发价电子。与未掺杂的ZnO和市售的TiO_2(P25)相比,已发现掺Fe的ZnO增强了可见光诱导的光催化活性,并且大大提高了掺Fe的ZnO的紫外光诱导的光催化性能。颗粒尺寸对光催化活性没有显着影响,最佳的Fe掺杂浓度为1%。

著录项

  • 来源
    《Journal of materials science》 |2014年第9期|3920-3923|共4页
  • 作者单位

    Faculty of Materials Science and Chemistry, China University of Geoscience, Wuhan 430074, China;

    Faculty of Materials Science and Chemistry, China University of Geoscience, Wuhan 430074, China;

    Faculty of Materials Science and Chemistry, China University of Geoscience, Wuhan 430074, China;

    Faculty of Materials Science and Chemistry, China University of Geoscience, Wuhan 430074, China;

    Faculty of Materials Science and Chemistry, China University of Geoscience, Wuhan 430074, China;

    Faculty of Materials Science and Chemistry, China University of Geoscience, Wuhan 430074, China;

    Faculty of Materials Science and Chemistry, China University of Geoscience, Wuhan 430074, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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