首页> 美国卫生研究院文献>Nanoscale Research Letters >A simple route to vertical array of quasi-1D ZnO nanofilms on FTO surfaces: 1D-crystal growth of nanoseeds under ammonia-assisted hydrolysis process
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A simple route to vertical array of quasi-1D ZnO nanofilms on FTO surfaces: 1D-crystal growth of nanoseeds under ammonia-assisted hydrolysis process

机译:在FTO表面上垂直排列准1D ZnO纳米膜的简单方法:在氨辅助水解过程中纳米种子的1D晶体生长

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摘要

A simple method for the synthesis of ZnO nanofilms composed of vertical array of quasi-1D ZnO nanostructures (quasi-NRs) on the surface was demonstrated via a 1D crystal growth of the attached nanoseeds under a rapid hydrolysis process of zinc salts in the presence of ammonia at room temperature. In a typical procedure, by simply controlling the concentration of zinc acetate and ammonia in the reaction, a high density of vertically oriented nanorod-like morphology could be successfully obtained in a relatively short growth period (approximately 4 to 5 min) and at a room-temperature process. The average diameter and the length of the nanostructures are approximately 30 and 110 nm, respectively. The as-prepared quasi-NRs products were pure ZnO phase in nature without the presence of any zinc complexes as confirmed by the XRD characterisation. Room-temperature optical absorption spectroscopy exhibits the presence of two separate excitonic characters inferring that the as-prepared ZnO quasi-NRs are high-crystallinity properties in nature. The mechanism of growth for the ZnO quasi-NRs will be proposed. Due to their simplicity, the method should become a potential alternative for a rapid and cost-effective preparation of high-quality ZnO quasi-NRs nanofilms for use in photovoltaic or photocatalytics applications.>PACS: 81.07.Bc; 81.16.-c; 81.07.Gf.
机译:在锌盐快速水解过程中,通过附着的纳米种子的一维晶体生长,证明了在表面上由准1D ZnO纳米结构(准NRs)的垂直阵列组成的ZnO纳米膜的简单合成方法。在室温下为氨水。在典型程序中,只需控制反应中乙酸锌和氨的浓度,即可在较短的生长时间内(约4至5分钟)并在室温下成功获得高密度的垂直取向的纳米棒状形态。温度过程。纳米结构的平均直径和长度分别约为30和110nm。 XRD表征证实,所制备的准NRs产品本质上是纯ZnO相,不存在任何锌络合物。室温光吸收光谱法显示出两个独立的激子特性,这表明所制备的ZnO准NR本质上具有高结晶性。将提出ZnO准NR的生长机理。由于其简单性,该方法应成为快速,经济高效地制备用于光伏或光催化应用的高质量ZnO准NRs纳米膜的潜在替代方法。> PACS :81.07.Bc; 81.16.-c; 81.07.Gf.

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