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首页> 外文期刊>Micro & Nano Letters, IET >Controllable preparation and photocatalytic activity of highly ordered ZnO nanoarrays
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Controllable preparation and photocatalytic activity of highly ordered ZnO nanoarrays

机译:高度有序的ZnO纳米阵列的可控制备和光催化活性

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Well-aligned ZnO nanotubular arrays (NTs) and nano rod-like arrays (NRs) were controllably fabricated on glass substrates through a facile hydrothermal method, and the prepared ZnO nanoarrays could be easily retrieved in the photodegradation of organic pollutants because ZnO is “growing” on the substrates. The morphology of ZnO nanoarrays could be governed by the cooling process and reaction time during the preparation. ZnO NTs tend to be formed by natural cooling, while ZnO NRs are apt to be constructed by sudden cooling. Furthermore, with the proceeding of the reaction, the ZnO nanoarrays display headless-pyramid configuration gradually. The ZnO nanoarrays prepared at 90 oC for 4 h show excellent photocatalytic activity. In the presence of the prepared ZnO NTs and NRs, the degradation rate of methylene blue (MB) is up to 96.8% and 94.1% after 1 h UV irradiation, respectively. The better photocatalytic performance of ZnO NTs is ascribed to the highly ordered array and large specific surface area which could promote the transfer of photo-generated electrons and restrain the recombination of electron-hole pairs. The well-aligned ZnO nanoarrays in this study could be fabricated on different substrates. Moreover, they could potentially serve as excellent photocatalysts in waste water treatment.
机译:通过简便的水热法可控地在玻璃基板上可控地制备取向良好的ZnO纳米管阵列(NTs)和纳米棒状阵列(NRs),并且制备的ZnO纳米阵列可以很容易地在有机污染物的光降解中回收。在基材上。制备过程中的冷却过程和反应时间决定了ZnO纳米阵列的形貌。 ZnO NTs倾向于通过自然冷却形成,而ZnO NRs易于通过突然冷却而形成。此外,随着反应的进行,ZnO纳米阵列逐渐显示无头金字塔构型。在90 oC下制备4小时的ZnO纳米阵列表现出优异的光催化活性。在制备的ZnO NTs和NRs的存在下,紫外光照射1 h后,亚甲基蓝(MB)的降解率分别高达96.8%和94.1%。 ZnO NTs的更好的光催化性能归因于高度有序的阵列和大的比表面积,这可以促进光生电子的转移并抑制电子-空穴对的重组。这项研究中排列良好的ZnO纳米阵列可以在不同的基底上制造。此外,它们可能在废水处理中作为优良的光催化剂。

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