首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Decoration of PbS nanoparticles on Al-doped ZnO nanorod array thin film with hydrogen treatment as a photoelectrode for solar water splitting
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Decoration of PbS nanoparticles on Al-doped ZnO nanorod array thin film with hydrogen treatment as a photoelectrode for solar water splitting

机译:铝处理ZnO纳米棒阵列薄膜上的PbS纳米粒子的氢处理作为光电子分解水的装饰

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摘要

Al-doped ZnO (AZO) nanorod arrays thin film with hydrogen treatment is directly used as a photoelectrode for solar water splitting without an extra transparent conducting oxide (TCO) thin film because it possesses the functions of TCO thin film and photoactive 1-dimensional nanostructured semiconductor simultaneously. To enhance the absorption in the visible region, PbS nanoparticles decorated the AZO nanorods via successive ionic layer adsorption and reaction route. The PbS nanoparticles have a face-centered cubic structure and their decoration does not destroy the 1-dimensional morphology of AZO nanorod arrays. With increasing the cycle number of PbS nanoparticles decoration, the grain size and loading of PbS nanoparticles become larger gradually which leads to lower energy bandgap and stronger absorption. A maximum photocurrent density of 1.65 mW cm"2 is obtained when the cycle number is 20, which is much higher than those without PbS nanoparticles sensitization or hydrogen treatment. This demonstrates that the AZO nanorod array thin film with hydrogen treatment can be directly used as a photoelectrode without an extra TCO thin film. Because the use of expensive metals can be avoided and the pre-fabrication of TCO thin film substrate is necessary no more, the fabrication of such a composite photoelectrode becomes simple and low-cost. So, it has great potentials in solar water splitting after sensitization by quantum dots capable of visible light absorption.
机译:经过氢处理的铝掺杂ZnO(AZO)纳米棒阵列薄膜由于具有TCO薄膜和具有光活性的一维纳米结构的功能,因此无需额外的透明导电氧化物(TCO)薄膜即可直接用作太阳能水分解的光电极。半导体同时。为了增强在可见光区域的吸收,PbS纳米颗粒通过连续的离子层吸附和反应途径装饰了AZO纳米棒。 PbS纳米颗粒具有面心立方结构,其装饰不会破坏AZO纳米棒阵列的一维形态。随着PbS纳米粒子装饰的循环次数增加,PbS纳米粒子的晶粒尺寸和载量逐渐变大,导致能带隙降低,吸收能力增强。当循环数为20时,获得的最大光电流密度为1.65 mW cm“ 2,这比没有进行PbS纳米粒子敏化或氢处理的光电流密度高得多。这表明,经过氢处理的AZO纳米棒阵列薄膜可以直接用作由于可以避免使用昂贵的金属,并且不再需要预制TCO薄膜基板,因此这种复合光电极的制造变得简单且成本低廉。在具有可见光吸收能力的量子点敏化后,在分解太阳能方面具有巨大潜力。

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