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Fabrication and characterization of flower-like CuO-ZnO heterostructure nanowire arrays by photochemical deposition

机译:花状CuO-ZnO异质结构纳米线阵列的光化学沉积及其表征

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摘要

A simple two step solution-based method was applied to fabricate CuO-ZnO heterostructured nanowire (NW) arrays. First, ZnO nanowires were grown on a Si substrate using the ammonia solution hydrothermal reaction. Afterwards, flower-like CuO crystals were photochemically deposited on the tip of the ZnO NWs, using ultraviolet (UV) light (312 nm wavelength) irradiation at room temperature. The morphology of the CuO was controlled by reaction time, density of ZnO NWs, and concentration of the solution. Because the deposited CuO is p-type and has narrow band gap properties, CuO-ZnO heterostructured NWs exhibited a stable p-n junction property and good ability to absorb visible light. Through investigation of UV light-triggered reaction phenomena, we found that the production of OH- from the photocatalytic process on the surface of ZnO NWs plays a critical role in the CuO deposition mechanism.
机译:一种简单的基于两步法的基于溶液的方法被用于制造CuO-ZnO异质结构纳米线(NW)阵列。首先,使用氨溶液水热反应在Zn衬底上生长ZnO纳米线。然后,在室温下使用紫外线(312 nm波长)照射,将花状CuO晶体光化学沉积在ZnO NW的尖端。 CuO的形态受反应时间,ZnO NWs的密度和溶液浓度的控制。因为沉积的CuO是p型且具有窄的带隙性质,所以CuO-ZnO异质结构NW表现出稳定的p-n结性质和良好的吸收可见光的能力。通过研究紫外光触发的反应现象,我们发现光催化过程在ZnO NWs表面产生OH-在CuO沉积机理中起关键作用。

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