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首页> 外文期刊>Chemistry: A European journal >Length-Dependent Charge Generation from Vertical Arrays of High-Aspect- Ratio ZnO Nanowires
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Length-Dependent Charge Generation from Vertical Arrays of High-Aspect- Ratio ZnO Nanowires

机译:从长宽比高的ZnO纳米线的垂直阵列中产生与长度有关的电荷

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摘要

Aqueous chemical growth of zinc oxide nanowires is a flexible and effective approach to obtain dense arrays of vertically oriented nanostructures with high aspect ratio. Herein we present a systematic study of the different synthesis parameters that influence the ZnO seed layer and thus the resulting morphological features of the freestanding vertically oriented ZnO nanowires. We obtained a homogeneous coverage of transparent conductive substrates with high-aspect-ratio nanowire arrays (length/diameter ratio of up to 52). Such nanostructured vertical arrays were examined to assess their electric and piezoelectric properties, and showed an electric charge generation upon mechanical compressive stress. The principle of energy harvesting with these nanostructured ZnO arrays was demonstrated by connecting them to an electronic charge amplifier and storing the generated charge in a series of capacitors. We found that the generated charge and the electrical behavior of the ZnO nanowires are strictly dependent on the nanowire length. We have shown the importance of controlling the morphological properties of such ZnO nanostructures for optimizing a nanogenerator device.
机译:氧化锌纳米线的水化学生长是获得具有高纵横比的垂直取向纳米结构的致密阵列的灵活而有效的方法。本文中,我们对影响ZnO种子层的不同合成参数以及由此产生的独立式垂直取向ZnO纳米线的形态特征进行了系统研究。我们获得了具有高纵横比的纳米线阵列(长度/直径比高达52)的透明导电基板的均匀覆盖。检查了这种纳米结构的垂直阵列,以评估其电和压电性能,并显示出在机械压缩应力下产生的电荷。通过将这些纳米结构的ZnO阵列连接到电子电荷放大器并将产生的电荷存储在一系列电容器中,证明了能量收集的原理。我们发现,ZnO纳米线的产生的电荷和电行为严格取决于纳米线的长度。我们已经显示了控制这种ZnO纳米结构的形态特性以优化纳米发电机装置的重要性。

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