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Design and tuning functionality of rod-like titanium dioxide-nickel oxide composites via a combinational methodology

机译:通过组合方法设计和调整棒状二氧化钛 - 氧化镍复合材料的功能

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摘要

TiO2-NiO composite nanorods were synthesized by combining hydrothermal growth of TiO2 nanorods and sputtering deposition of NiO film. Crystalline NiO coverage films with various thicknesses were sputter coated onto TiO2 nanorods by controlling NiO sputtering duration. The crystallographic analyses demonstrate that crystalline rutile TiO2-cubic NiO composite nanorods were formed herein. In comparison with pristine TiO2 and NiO, the coverage of NiO crystals on the TiO2 nanorods led to an enhanced photodegradation activity of the TiO2-NiO composites towards Rhodamine B dyes under irradiation. Moreover, the TiO2-NiO composite nanorods with the adequate content of NiO coverage layer show superior gas-sensing responses to 25-200 ppm ammonia gas in comparison with those of the constituent counterparts. The experimental results herein demonstrate that decoration of NiO film on the surfaces of TiO2 nanorods with tunable coverage sizes via sputtering deposition is a promising approach to design TiO2-NiO composite nanorods with desirable functionalities.
机译:通过组合TiO2纳米棒的水热生长和NiO膜的溅射沉积来合成TiO2-NiO复合纳米棒。通过控制NIO溅射持续时间,具有各种厚度的结晶NIO覆盖膜的溅射涂覆到TiO2纳米棒上。结晶分析表明,本文形成了结晶金红石TiO2-立方NiO复合纳米码。与原始TiO 2和NiO相比,TiO2纳米棒上的NiO晶体的覆盖率导致TiO 2 -NIO复合材料的增强光降解活性在照射下朝向罗丹明B染料。此外,与组分对应物的那些相比,具有足够的NIO覆盖层的足够含量的TiO2-NiO复合纳米杆呈现出优异的气体感测反应至25-200ppm氨气。这里的实验结果表明,通过溅射沉积的可调谐覆盖尺寸的TiO2纳米棒表面上的NiO膜的装饰是设计具有所需功能的TiO2-NiO复合纳米棒的有希望的方法。

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