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首页> 外文期刊>Nanotechnology >Self-assembly nuclei with a preferred orientation at the extended hydrophobic surface toward textured growth of ZnO nanorods in aqueous chemical bath deposition
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Self-assembly nuclei with a preferred orientation at the extended hydrophobic surface toward textured growth of ZnO nanorods in aqueous chemical bath deposition

机译:在延伸疏水表面朝向ZnO纳米棒沉积织地不良生长的ZnO纳米棒中的ZnO纳米棒纹理中的优选核

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Textured growth of ZnO nanorods with no restriction of the substrate material is beneficial to their applications. The approaches to grow ZnO nanorods with texture are based on preparing suitable surface structure on the growth substrate, e.g. using a crystalline substrate with a specific surface structures or pre-depositing seed layers by high-temperature annealing of precursors. In the aqueous nutrient solution of the chemical bath deposition (CBD) process for ZnO growth, the concentration of Zn2+ ions at the extended hydrophobic surface is sufficiently high for forming self-assembly nuclei with a preferred orientation, resulting in the subsequent textured growth of ZnO nanorods. In this research, the hydrophobic surface is prepared by modifying Si surface with a self-assembly octadecyltrimethoxysilane (OTMS) monolayer. The formation mechanism of the nuclei on this hydrophobic surface for the textured growth of ZnO nanorods is investigated. It is shown that the nuclei form at the beginning of the CBD process and later transform into the Wurtzite structure to seed ZnO growth. An alternative approach to prepare seed layers is therefore involved in the aqueous CBD process, which is applicable to a range of hydrophobic substrates for textured growth of ZnO nanorods.
机译:ZnO纳米棒的织构生长不受衬底材料的限制,有利于其应用。生长具有纹理的ZnO纳米棒的方法基于在生长衬底上制备合适的表面结构,例如使用具有特定表面结构的晶体衬底或通过前体的高温退火预沉积种子层。在用于ZnO生长的化学浴沉积(CBD)工艺的营养水溶液中,延伸的疏水表面上Zn2+离子的浓度足够高,以形成具有优选取向的自组装核,从而导致ZnO纳米棒的随后织构化生长。在本研究中,疏水表面是通过用自组装十八烷基三甲氧基硅烷(OTMS)单分子膜修饰硅表面来制备的。研究了ZnO纳米棒织构生长的疏水表面上原子核的形成机制。结果表明,晶核在CBD过程开始时形成,然后转变为纤锌矿结构,从而促进ZnO的生长。因此,制备种子层的另一种方法涉及到水性CBD工艺,该工艺适用于一系列用于ZnO纳米棒织构生长的疏水衬底。

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