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Influence of heat treatment on the properties of hydrothermally grown 3D/1D TiO_2 hierarchical hybrid microarchitectures over TiO_2 seeded FTO substrates

机译:热处理对TiO_2种子FTO衬底上水热生​​长3D / 1D TiO_2层级混合微体系结构性能的影响

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摘要

Hierarchical hybrid microarchitectured 3D/1D titanium oxide (TiO2) films were developed by one-step surfactant-free hydrothermal method over TiO2 seeded FTO substrates. The TiO2 films synthesized from hydrothermal method at growth temperature 180 degrees C were dried at room temperature and then heat treatment at 70 degrees C, 150 degrees C, 250 degrees C, 350 degrees C and 450 degrees C formed hierarchical hybrid microarchitectural structures. X-ray diffraction and Raman spectral results of the prepared TiO2 hierarchical hybrid microarchitectured films confirmed the formation of single phase rutile tetragonal TiO2 system. Scanning electron microscopy results revealed that the heat treatment at various temperatures effectively modified the surface morphology of hydrothermally grown 3D/1D TiO2 hierarchical hybrid microstructures. The UV-vis and photoluminescence spectral results of the heat treated TiO2 films revealed modification in the bandgap energy and the electron-hole pairs recombination rate respectively when compared with that of the pristine film. The photoelectric measurements revealed that the heat treated film at 450 degrees C exhibited the relatively higher photocurrent density of 2.68 mA/cm(2) and applied bias potential efficiency of 2.91% as compared with all other heat treated and pristine films. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过一步法无表面活性剂水热法在TiO2种子FTO衬底上开发了多层混合微体系3D / 1D氧化钛(TiO2)薄膜。通过水热法在生长温度180摄氏度下合成的TiO2薄膜在室温下干燥,然后在70摄氏度,150摄氏度,250摄氏度,350摄氏度和450摄氏度下进行热处理,形成分层的混合微体系结构。制备的TiO2层级混合微体系薄膜的X射线衍射和拉曼光谱结果证实了单相金红石四方TiO2体系的形成。扫描电子显微镜结果表明,在不同温度下进行的热处理有效地改变了水热生长的3D / 1D TiO2分层杂化微结构的表面形态。热处理后的TiO2薄膜的紫外可见光谱和光致发光光谱结果表明,与原始薄膜相比,带隙能量和电子-空穴对复合速率分别发生了改变。光电测量表明,与所有其他热处理过的原始膜相比,在450摄氏度下热处理过的膜表现出相对较高的光电流密度为2.68 mA / cm(2),施加的偏置电势效率为2.91%。 (C)2018 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Applied Surface Science》 |2018年第15期|122-131|共10页
  • 作者单位

    SRM Inst Sci & Technol, Dept Phys & Nanotechnol, Crystal Growth & Thin Film Lab, Kattankulathur 603203, Tamil Nadu, India;

    SRM Inst Sci & Technol, Dept Phys & Nanotechnol, Crystal Growth & Thin Film Lab, Kattankulathur 603203, Tamil Nadu, India;

    SRM Inst Sci & Technol, Dept Phys & Nanotechnol, Crystal Growth & Thin Film Lab, Kattankulathur 603203, Tamil Nadu, India;

    Madurai Kamaraj Univ, Sch Phys, Madurai 625021, Tamil Nadu, India;

    Anna Univ, Ctr Nanosci & Technol, Madras 600025, Tamil Nadu, India;

    Bharathidasan Univ, Sch Phys, Crystal Growth & Thin Film Lab, Tiruchchirappalli 620024, Tamil Nadu, India;

    SRM Inst Sci & Technol, Dept Phys & Nanotechnol, Crystal Growth & Thin Film Lab, Kattankulathur 603203, Tamil Nadu, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Seed layer; Spin coating method; 3D/1D TiO2; Hydrothermal method; Heat treatment; Photoelectric properties;

    机译:种子层;旋涂法;3D / 1D TiO2;水热法;热处理;光电性能;

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