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首页> 外文期刊>Nanoscale >Synthesis and characterization of one-dimensional flat ZnO nanotower arrays as high-efficiency adsorbents for the photocatalytic remediation of water pollutants
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Synthesis and characterization of one-dimensional flat ZnO nanotower arrays as high-efficiency adsorbents for the photocatalytic remediation of water pollutants

机译:一维的合成和表征平氧化锌nanotower数组作为高效光催化的吸附剂水污染物

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摘要

We report on facile fabrication of 1-D flat ZnO nanotower arrays on various substrates, including a metal, a semiconductor and an insulator. The nanotowers have a unique flat basal section near the substrate and taper in stages to wire-like at the tip. Electron microscopy and X-ray photoelectron spectroscopy are used to characterize these new nanostructures, revealing that their morphologies are significantly influenced by reaction temperature. A qualitative formation mechanism is proposed based on the experimental observations. A proof-of-concept demonstration shows that the ZnO nanotower arrays are highly effective at adsorbing and subsequently photo-remediating a model pollutant (Eosin B) from water. These observations could promote new applications of photocatalytic adsorbents for wastewater treatment utilizing oxide semiconductor nanostructures.
机译:我们报告的制作的一维氧化锌nanotower阵列在不同的底物,包括金属、半导体和绝缘体。nanotowers有独特的平面基底节近了衬底和锥形平衡阶段的尖端。使用光电子能谱这些新的纳米结构特征,揭示他们的形态明显受反应温度的影响。形成机制的基础上,提出了实验观察。演示表明,氧化锌nanotower数组高度有效地吸附和吗随后photo-remediating模型污染物(伊红B)。促进光催化的新应用程序吸附剂对废水处理利用氧化物半导体纳米结构。

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