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Simple and cost-effective fabrication of size-tunable zinc oxide architectures by multiple size reduction technique

机译:通过多种尺寸减小技术简单且经济高效地制造尺寸可调的氧化锌架构

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We present a simple size reduction technique for fabricating 400?nm zinc oxide (ZnO) architectures using a silicon master containing only microscale architectures. In this approach, the overall fabrication, from the master to the molds and the final ZnO architectures, features cost-effective UV photolithography, instead of electron beam lithography or deep-UV photolithography. A photosensitive Zn-containing sol–gel precursor was used to imprint architectures by direct UV-assisted nanoimprint lithography (UV-NIL). The resulting Zn-containing architectures were then converted to ZnO architectures with reduced feature sizes by thermal annealing at 400?°C for 1?h. The imprinted and annealed ZnO architectures were also used as new masters for the size reduction technique. ZnO pillars of 400?nm diameter were obtained from a silicon master with pillars of 1000?nm diameter by simply repeating the size reduction technique. The photosensitivity and contrast of the Zn-containing precursor were measured as 6.5?J?cm?2 and 16.5, respectively. Interesting complex ZnO patterns, with both microscale pillars and nanoscale holes, were demonstrated by the combination of dose-controlled UV exposure and a two-step UV-NIL.
机译:我们提出了一种简单的尺寸减小技术,该技术使用仅包含微型体系结构的硅母盘来制造400nm氧化锌(ZnO)体系结构。采用这种方法,从母模到模具再到最终的ZnO架构,整个制造过程均采用经济有效的UV光刻技术,而不是电子束光刻或深紫外光刻技术。光敏的含锌溶胶-凝胶前体通过直接紫外线辅助的纳米压印光刻技术(UV-NIL)用于压印结构。然后通过在400℃下热退火1?h,将所得的含锌结构转化为具有减小特征尺寸的ZnO结构。压印和退火的ZnO结构也被用作尺寸减小技术的新母版。只需重复尺寸缩小技术,即可从直径为1000?nm的硅母盘上获得直径为400?nm的ZnO柱。含锌前体的光敏性和对比度分别为6.5Ω·J·cm ≥2和16.5。有趣的复杂ZnO图案,既有微米级的柱子,又有纳米级的孔,通过剂量控制的UV曝光和两步UV-NIL的结合得到了证明。

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