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首页> 外文期刊>Crystal growth & design >Alignment, Morphology and Defect Control of Vertically Aligned ZnO Nanorod Array: Competition between “Surfactant” and “Stabilizer” Roles of the Amine Species and Its Photocatalytic Properties
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Alignment, Morphology and Defect Control of Vertically Aligned ZnO Nanorod Array: Competition between “Surfactant” and “Stabilizer” Roles of the Amine Species and Its Photocatalytic Properties

机译:垂直排列的ZnO纳米棒阵列的排列,形态和缺陷控制:胺类物质的“表面活性剂”和“稳定剂”作用及其光催化性能之间的竞争

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摘要

We demonstrate effective control of the morphology, defect content and vertical alignment of ZnO nanorod (NR) arrays grown by a solution method by simply varying the hexamine concentration during growth. We show that the amine acts both as a growth ‘stabilizer’ and ‘surfactant’ and controls both Zn release for ZnO formation and caps non-polar planes, respectively. Competition between these ‘stabilizer’ and ‘surfactant’ roles facilitates morphology, alignment and defect content control of 1D ZnO NR arrays. Well aligned, prismatic, defect (Zn interstitial) controlled ZnO NR arrays grown with a 1M amine concentration show higher photocatalytic degradation of Methylene Blue dye solutions under UV irradiation. Shallow donor zinc interstitials readily supply electrons which may increase the space charge near the nano-catalyst surface. The increased band bending associated with the interfacial electric field in the space charge region may then better facilitate the separation of photogenerated carriers and thus enhance the photocatalytic performance. Understanding the role of amine in the solution growth of 1D ZnO NR arrays holds great promise for tailoring ZnO NR functionalities for various potential applications.
机译:我们通过简单地改变生长过程中的六胺浓度,证明了对通过溶液法生长的ZnO纳米棒(NR)阵列的形态,缺陷含量和垂直排列的有效控制。我们表明,胺既可以作为生长的“稳定剂”又可以作为“表面活性剂”,并分别控制形成ZnO的锌释放量和非极性平面的上限。这些“稳定剂”和“表面活性剂”角色之间的竞争促进了一维ZnO NR阵列的形态,排列和缺陷含量控制。用1M胺浓度生长的取向良好,棱柱形,缺陷(锌间隙)控制的ZnO NR阵列在UV辐射下显示出较高的光催化降解亚甲基蓝染料溶液的能力。浅的供体锌间隙很容易提供电子,这可能会增加纳米催化剂表面附近的空间电荷。与空间电荷区域中的界面电场相关联的增加的带弯曲然后可以更好地促进光生载流子的分离,从而增强光催化性能。了解胺在一维ZnO NR阵列的溶液生长中的作用,对于为各种潜在应用定制ZnO NR功能具有广阔的前景。

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