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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Enhanced charge collection and photocatalysis performance of CdS and PbS nanoclusters co-sensitized TiO2 porous film
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Enhanced charge collection and photocatalysis performance of CdS and PbS nanoclusters co-sensitized TiO2 porous film

机译:CdS和PbS纳米团簇共敏TiO2多孔膜的电荷收集和光催化性能增强

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摘要

A novel translucent TiO2 porous film was prepared through etched method. The CdS, PbS and CdS/PbS nanoclusters were imbedded on TiO2 porous film by successive ionic layer adsorption and reaction method. Microstructure, morphology, optical and photoelectron-chemical properties of the as-synthesized thin films were investigated systematically. XRD and morphology analysis showed that PbS or CdS nanoclusters have been attached to the TiO2 porous films. It was found that the energy band gap of TiO2 porous film decreased from 3.46 to 3.2 eV after sensitized with nanoclusters. The photo-current density of ITO/TiO2 photoelectrode increased from 0.017 to 0.28 mA/cm(2) after co-sensitized with CdS and PbS nanoclusters. Besides, the photoelectrode sensitized with two sorts of nanoclusters showed evident higher photocurrent density than which sensitized just one sort of nanoclusters. The photocurrent density of ITO/TiO2/PbS and TO/TiO2/CdS photoelectrode was 0.11 mA/cm(2) and 0.22 mA/cm(2) respectively. 0.28 mA/cm(2) can be obtained by ITO/TiO2/CdS/PbS photoelectrode. The results showed that the optical and photoelectrochemistry properties and phtotcatalysis performance of TiO2 porous film were greatly improved by co-sensitized with CdS and PbS nanoclusters. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过刻蚀法制备了一种新型的半透明TiO2多孔膜。通过连续的离子层吸附和反应方法,将CdS,PbS和CdS / PbS纳米簇嵌入TiO2多孔膜上。系统地研究了合成薄膜的微观结构,形貌,光学和光电子化学性质。 XRD和形态分析表明,PbS或CdS纳米团簇已经附着在TiO2多孔膜上。发现纳米团簇敏化后,TiO2多孔膜的能带隙从3.46降至3.2 eV。与CdS和PbS纳米簇共敏化后,ITO / TiO2光电极的光电流密度从0.017增加到0.28 mA / cm(2)。此外,用两种纳米团簇敏化的光电极显示出比仅对一种纳米团簇敏化的光电流密度明显更高。 ITO / TiO2 / PbS和TO / TiO2 / CdS光电极的光电流密度分别为0.11 mA / cm(2)和0.22 mA / cm(2)。通过ITO / TiO2 / CdS / PbS光电极可以获得0.28 mA / cm(2)。结果表明,与CdS和PbS纳米团簇共敏化后,TiO2多孔膜的光化学和光电化学性能以及光催化性能大大提高。 (C)2015 Elsevier B.V.保留所有权利。

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