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Fabrication and Photoelectrochemical Properties of CdS/TiO2 Composite Nanotube Array Electrode

机译:CdS / TiO2复合纳米管阵列电极的制备及光电化学性能

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The synthesis and application of one dimensional composite nanomaterials have aroused increasing interest in recent years because the composites can exhibit better properties and superior performance than those of individual nanomaterials. Among various composite nanomaterials, TiO2-based composite nanomaterials are of particular concern for their great application potential in sensing, catalysis, photovoltaic, photoelectrolysis,nanotemplate and biocompatible coatings . However, the easy recombination between photogenerated electron/hole pairs leads to low quantum efficiency in the practical applications. Moreover,the wide band gap of TiO2 (3.2eV) limits its absorption of sunlight to the ultraviolet region of the solar spectrum, which occupies only less than 5% of the total solar energy. Therefore,the goal of research activities in this field is mainly directed to the fabrication of TiO2 nanocomposites with favourable configuration for the improvement of quantum efficiency and visible photosensitivity of TiO2.
机译:一维复合纳米材料的合成和应用近年来引起了越来越多的关注,因为复合材料比单个纳米材料具有更好的性能和优越的性能。在各种复合纳米材料中,基于TiO 2的复合纳米材料因其在传感,催化,光伏,光电解,纳米模板和生物相容性涂层中的巨大应用潜力而特别受到关注。然而,在实际应用中,光生电子/空穴对之间的容易重组导致低量子效率。此外,TiO2(3.2eV)的宽带隙将其对太阳光的吸收限制在太阳光谱的紫外线区域,该区域仅占总太阳能的不到5%。因此,该领域研究活动的目标主要是针对具有良好构型的TiO2纳米复合材料的制备,以提高TiO2的量子效率和可见光敏性。

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