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Nanoplasmonic response of porous Au-TiO2 thin films prepared by oblique angle deposition

机译:倾斜角沉积制备多孔Au-TiO2薄膜的纳米升响应

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摘要

In this work, a versatile method is proposed to increase the sensitivity of optical sensors based on the localized surface plasmon resonance (LSPR) phenomenon. It combines a physical deposition method with the oblique angle deposition technique, allowing the preparation of plasmonic thin films with tailored porosity. Thin films of Au-TiO2 were deposited by reactive magnetron sputtering in a 3D nanostructure (zigzag growth), at different incidence angles (0 degrees <= alpha <= 80 degrees), followed by in-air thermal annealing at 400 degrees C to induce the growth of the Au nanoparticles. The roughness and surface porosity suffered a gradual increment by increasing the incidence angle. The resulting porous zigzag nanostructures that were obtained also decreased the principal refractive indexes (RIs) of the matrix and favoured the diffusion of Au through grain boundaries, originating broader nanoparticle size distributions. The transmittance minimum of the LSPR band appeared at around 600 nm, leading to a red-shift to about 626 nm for the highest incidence angle alpha = 80 degrees, due to the presence of larger (scattering) nanoparticles. It is demonstrated that zigzag nanostructures can enhance adsorption sites for LSPR sensing by tailoring the porosity of the thin films Atmosphere controlled transmittance-LSPR measurements showed that the RI sensitivity of the films is improved for higher incidence angles.
机译:在这项工作中,提出了一种基于局部表面等离子体共振(LSPR)现象来提高光学传感器的灵敏度的多功能方法。它结合了具有倾斜角沉积技术的物理沉积方法,允许使用量身定制的孔隙率的等离子体薄膜的制备。通过在3D纳米结构(Z字形生长)中的反应性磁控溅射沉积Au-TiO2的薄膜,在不同的入射角(0度<=α<= 80度),然后在400℃下进行空气热退火以诱导Au纳米颗粒的生长。通过增加入射角来逐渐增加粗糙度和表面孔隙率。获得的所得多孔锯齿形纳米结构也降低了基质的主要折射率(RIS),并赞成Au通过晶界的扩散,源于更宽的纳米颗粒尺寸分布。 LSPR带的透射率最小出现在600nm左右,由于存在较大(散射)纳米颗粒,导致最高入射角α= 80度的红移至约626nm。证明Zigzag纳米结构可以通过定制薄膜气氛控制透射率-LSPR测量的孔隙率来增强LSPR感测的吸附位点,所述透射率-LSPR测量显示薄膜的RI灵敏度得到更高的入射角的改善。

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