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High-Resolution Nanosphere Lithography (NSL) to Fabricate Highly-Ordered ZnO Nanorod Arrays

机译:高分辨率纳米球光刻(NSL)可制造高度有序的ZnO纳米棒阵列

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Here we report our successful development of a high-resolution, low-cost, simple and convenient technique based on nanosphere lithography (NSL) to fabricate large-scale periodic gold nanoparticle pattern, which is the most common catalyst material in the synthesis of nanostructure and also a feature material for surface plasmon resonation (SPR) research. In order to improve lithography resolution by PS nanosphere self-assembling monolayer (SAM), we adapted the following steps in our fabrication strategy. The original continuous etching by oxygen plasma was replaced by multiple short treatments to avoid heating effect. In addition, direct oxidation was utilized to remove the nanospheres instead of the supersonic process. Using the obtained Au nanoparticle pattern, ZnO nanorod arrays with an average diameter of 50 nm were easily obtained by 600 nm PS nanospheres SAM, which was even smaller than the minimum size by utilizing 400 nm nanospheres SAM in the previous work. Thus, we succeeded in the fabrication of highly-ordered ZnO nanorod arrays with largely tunable diameter by this higher-resolution nanosphere lithography. We also present X-ray diffraction (XRD), transmission electron microscopy (TEM), photoluminescence (PL) and Raman results of our as-grown samples, indicating great crystallization quality and optical property.
机译:在这里,我们报告了基于纳米球光刻(NSL)的高分辨率,低成本,简单便捷技术的成功开发,该技术可用于制备大规模周期性金纳米粒子图案,这是合成纳米结构和纳米结构中最常见的催化剂材料。也是表面等离振子共振(SPR)研究的功能材料。为了通过PS纳米球自组装单层(SAM)提高光刻分辨率,我们在制造策略中采用了以下步骤。通过多次短处理来代替原来由氧等离子体进行的连续蚀刻,以避免加热效应。此外,直接氧化被用来去除纳米球,而不是超音速过程。使用获得的金纳米颗粒图案,通过600 nm PS纳米球SAM可以轻松获得平均直径为50 nm的ZnO纳米棒阵列,该阵列甚至比在先前工作中利用400 nm纳米球SAM的最小尺寸还要小。因此,通过这种高分辨率的纳米球光刻技术,我们成功地制造了直径可调的高度有序的ZnO纳米棒阵列。我们还介绍了我们所生长的样品的X射线衍射(XRD),透射电子显微镜(TEM),光致发光(PL)和拉曼光谱结果,表明其良好的结晶质量和光学性能。

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