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Patterned Synthesis of ZnO Nanorod Arrays for Nanoplasmonic Waveguide Applications

机译:纳米等离子波导应用的ZnO纳米棒阵列的图案合成

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摘要

We report the patterned synthesis of ZnO nanorod arrays of diameters between 50 nm and 130 nm and various spacings. This was achieved by patterning hole arrays in a polymethyl methacrylate layer with electron beam lithography, followed by chemical synthesis of ZnO nanorods in the patterned holes using the hydrothermal method. The fabrication of ZnO nanorod waveguide arrays is also demonstrated by embedding the nanorods in a silver film using the electroplating process. Optical transmission measurement through the nanorod waveguide arrays is performed and strong resonant transmission of visible light is observed. We have found the resonance shifts to a longer wavelength with increasing nanorod diameter. Furthermore, the resonance wavelength is independent of the nanowaveguide array period, indicating the observed resonant transmission is the effect of a single ZnO nanorod waveguide. These nanorod waveguides may be used in single-molecule imaging and sensing as a result of the nanoscopic profile of the light transmitted through the nanorods and the controlled locations of these nanoscale light sources.
机译:我们报告了直径介于50 nm和130 nm之间以及各种间距的ZnO纳米棒阵列的图案化合成。这是通过使用电子束光刻在聚甲基丙烯酸甲酯层中对孔阵列进行图案化,然后使用水热方法在图案化孔中化学合成ZnO纳米棒来实现的。 ZnO纳米棒波导阵列的制造还通过使用电镀工艺将纳米棒嵌入银膜中得到了证明。执行通过纳米棒波导阵列的光透射测量,并且观察到可见光的强共振透射。我们发现随着纳米棒直径的增加,共振移至更长的波长。此外,共振波长与纳米波导阵列周期无关,表明观察到的共振传输是单个ZnO纳米棒波导的作用。这些纳米棒波导可用于单分子成像和传感,这是由于通过纳米棒传输的光的纳米级分布和这些纳米级光源的受控位置的结果。

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