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Synthesis and characterization of hydrothermally grown zinc oxide (ZnO) nanorods for optical waveguide application

机译:用于光波导的水热生长氧化锌(ZnO)纳米棒的合成与表征

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We report a simple method to synthesize Zinc oxide nanorods, grown without using catalysis with less complicity. This was done by hydrothermal treatment of zinc nitrate and hexamine at 90°C and various times (5-20h) and also we find that the nanorod size and shape depends on heating rate, temperature and heating time. ZnO nanorods have been investigated for their light guiding ability and their effective index of refraction for use in near air index optical systems by developing a ridge waveguide structure. ZnO nanorod waveguides (100 μm w × 2.5 μm h × lmm l) were grown on a seeded glass substrate template using hydrothermal process at 90°C. Modification of the substrate surface in order to obtain dense perpendicularly-oriented ordered nanorods induced selective growth. These structures were characterized by SEM, EDX, and XRD. The guiding property, i.e. locally excited photoluminescence propagation along the length of the waveguide, was analyzed with image-processing program in MATLAB. Following application of a fiber optic white light source on the ZnO nanostructure, we found that light propagation occurred within the glass substrate. No such propagation occurred if light was applied on uncoated areas of the glass. Modeling of waveguide behavior to determine the number propagating modes was exercised using waveguide mode solver in COMSOL.
机译:我们报告了一种简单的方法来合成氧化锌纳米棒,无需使用催化方法,就可以减少复杂性。这是通过在90°C和不同时间(5-20​​h)对硝酸锌和六胺进行水热处理而完成的,而且我们发现纳米棒的大小和形状取决于加热速率,温度和加热时间。通过开发脊形波导结构,已研究了ZnO纳米棒的导光能力和在近空气指数光学系统中使用的有效折射率。 ZnO纳米棒波导(100μmw×2.5μmh×1mm l)使用水热工艺在90°C的条件下在籽晶玻璃基板模板上生长。为了获得致密的垂直取向的有序纳米棒,对基材表面进行改性可以诱导选择性生长。这些结构用SEM,EDX和XRD表征。使用MATLAB中的图像处理程序分析了导向特性,即沿波导长度的局部激发光致发光传播。在ZnO纳米结构上应用光纤白光源后,我们发现光传播发生在玻璃基板内。如果将光照射在玻璃的未镀膜区域,则不会发生这种传播。使用COMSOL中的波导模式求解器对确定行为传播数量的波导行为进行了建模。

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