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Au–Si plasmonic platforms: synthesis structure and FDTD simulations

机译:Au-Si等离子体平台:合成结构和FDTD模拟

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摘要

Plasmonic platforms based on Au nanostructures have been successfully synthesized by directional solidification of a eutectic from Au and the substrate. In order to determine homogeneous shape and space distribution, the influence of annealing conditions and the initial thickness of the Au film on the nanostructures was analyzed. For the surface morphology studies, SEM and AFM measurements were performed. The structure of platforms was investigated using XRD and XPS methods. Structural investigations confirmed, that nanostructures consist of metallic Au, growing along the [111] direction. The most homogeneous seems to be the platform obtained by solidification of a 2.8 nm Au film, annealed at 550 °C for 15 min. This sample was subsequently chosen for theoretical calculations. Simulations of electromagnetic field propagation through the produced samples were performed using the finite-difference time domain (FDTD) method. The calculated absorbance, as a result of the FDTD simulation shows a quite good agreement with experimental data obtained in the UV–vis range.
机译:通过金和基底的共晶定向凝固,成功地合成了基于金纳米结构的等离子平台。为了确定均匀的形状和空间分布,分析了退火条件和金膜初始厚度对纳米结构的影响。对于表面形态研究,进行了SEM和AFM测量。使用XRD和XPS方法研究了平台的结构。结构研究证实,纳米结构由沿[111]方向生长的金属Au组成。最均匀的似乎是通过固化550 nm退火15分钟的2.8 nm Au膜获得的平台。随后选择该样本进行理论计算。使用有限差分时域(FDTD)方法对通过生成的样本传播的电磁场进行了仿真。 FDTD模拟的结果表明,计算出的吸光度与在UV-vis范围内获得的实验数据非常吻合。

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