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Aqueous chemical growth and patterning of ZnO nanopillars on different substrate materials

机译:ZnO纳米柱在不同基底材料上的水化学生长和构图

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摘要

Aqueous chemical growth (ACG) is a low-temperature approach that is only weakly influenced by the substrate and allows for the growth of ZnO nanopillars on various substrates. ACG is an efficient way to generate wafer-scale and densely packed arrays of ZnO nanopillars even on polymer materials. Photolu-minescence (PL) characterisation clearly shows a comparatively strong band-edge luminescence even at room temperature that is accompanied with a rather weak visible luminescence in the yellow/orange spectral range. We introduce a rather simple postgrowth lithographic technique. Patterning of ZnO nanopillars even on layered conducting and flexible substrate materials using ACG as a low-temperature growth technique is demonstrated. The economical potential for future applications and devices using ZnO nanopillar arrays is discussed.
机译:水性化学生长(ACG)是一种低温方法,仅受基材的影响很小,并允许ZnO纳米柱在各种基材上生长。 ACG是一种即使在聚合物材料上也可以生成晶圆级且密堆积的ZnO纳米柱阵列的有效方法。光致发光(PL)的特征清楚地显示了即使在室温下也具有相对较强的带边缘发光,而在黄色/橙色光谱范围内伴随着相当弱的可见光。我们介绍了一种相当简单的后生长光刻技术。演示了使用ACG作为低温生长技术,甚至在层状导电和柔性衬底材料上对ZnO纳米柱进行构图。讨论了使用ZnO纳米柱阵列的未来应用和设备的经济潜力。

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