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低成本合成具有三重对称性的纯氧化锌纳米壁。

Low-cost synthesis of pure ZnO nanowalls showing three-fold symmetry.

作者信息

Scuderi Mario, Strano Vincenzina, Spinella Corrado, Nicotra Giuseppe, Mirabella Salvo

机构信息

IMM-CNR, VIII strada 5, 95121 Catania, Italy.

出版信息

Nanotechnology. 2018 Apr 3;29(13):135707. doi: 10.1088/1361-6528/aaa9e0.

Abstract

ZnO nanowalls (NWLs) represent a non-toxic, Earth abundant, high surface-to-volume ratio, semiconducting nanostructure which has already showed potential applications in biosensing, environmental monitoring and energy. Low-cost synthesis of these nanostructures is extremely appealing for large scale upgrading of laboratory results, and its implementation has to be tested at the nanoscale, at least in terms of chemical purity and crystallographic orientation. Here, we have produced pure and texturized ZnO NWLs by using chemical bath deposition (CBD) synthesis followed by a thermal treatment at 300 °C. We examined the NWL formation process and the new obtained structure at the nanoscale, by means of scanning and transmission electron microscopy in combination with x-ray diffraction and Rutherford backscattering spectrometry. We have shown that only after annealing at 300 °C in nitrogen does the as-grown material, composed of a mixture of Zn compounds NWLs, show its peculiar crystal arrangement. The resulting ZnO sheets are in fact made by ZnO wurtzite domains (4-5 nm) that show a particular kind of texturization; indeed, they are aligned with their own c-axis always perpendicular to the sheets forming the wall and rotated (around the c-axis) by multiples of 20° from each other. The presented data show that low-cost CBD, followed by an annealing process, gives pure ZnO with a peculiarly ordered nanostructure that shows three-fold symmetry. Such evidence at the nanoscale will have significant implications for realizing sensing or catalyst devices based on ZnO NWLs.

摘要

氧化锌纳米壁(NWLs)是一种无毒、储量丰富、具有高表面积与体积比的半导体纳米结构,已在生物传感、环境监测和能源领域展现出潜在应用。这些纳米结构的低成本合成对于实验室成果的大规模升级极具吸引力,并且其实施必须在纳米尺度上进行测试,至少在化学纯度和晶体取向方面。在此,我们通过化学浴沉积(CBD)合成法,随后在300°C下进行热处理,制备出了纯净且具有织构的氧化锌纳米壁。我们借助扫描电子显微镜、透射电子显微镜,并结合X射线衍射和卢瑟福背散射光谱法,在纳米尺度上研究了纳米壁的形成过程以及新获得的结构。我们已经表明,只有在氮气中于300°C退火后,由锌化合物纳米壁混合物组成的生长态材料才会展现出其独特的晶体排列。实际上,所得的氧化锌薄片是由纤锌矿结构的氧化锌畴(4 - 5纳米)构成,这些畴呈现出一种特殊的织构;确切地说,它们的c轴始终垂直于构成壁的薄片排列,并且彼此围绕c轴旋转20°的倍数。所呈现的数据表明,低成本的化学浴沉积法,再加上退火过程,能够得到具有特别有序纳米结构且呈现三重对称性的纯净氧化锌。纳米尺度上的这些证据对于基于氧化锌纳米壁实现传感或催化器件将具有重要意义。

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