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Effect of Refractive Index of Substrate on Fabrication and Optical Properties of Hybrid Au-Ag Triangular Nanoparticle Arrays

机译:衬底的折射率对金-银杂化三角形纳米粒子阵列的制备和光学性能的影响

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In this study, the nanosphere lithography (NSL) method was used to fabricate hybrid Au-Ag triangular periodic nanoparticle arrays. The Au-Ag triangular periodic arrays were grown on different substrates, and the effect of the refractive index of substrates on fabrication and optical properties was systematically investigated. At first, the optical spectrum was simulated by the discrete dipole approximation (DDA) numerical method as a function of refractive indexes of substrates and mediums. Simulation results showed that as the substrates had the refractive indexes of 1.43 (quartz) and 1.68 (SF5 glass), the nanoparticle arrays would have better refractive index sensitivity (RIS) and figure of merit (FOM). Simulation results also showed that the peak wavelength of the extinction spectra had a red shift when the medium’s refractive index n increased. The experimental results also demonstrated that when refractive indexes of substrates were 1.43 and 1.68, the nanoparticle arrays and substrate had better adhesive ability. Meanwhile, we found the nanoparticles formed a large-scale monolayer array with the hexagonally close-packed structure. Finally, the hybrid Au-Ag triangular nanoparticle arrays were fabricated on quartz and SF5 glass substrates and their experiment extinction spectra were compared with the simulated results.
机译:在这项研究中,纳米球光刻(NSL)方法被用来制造金-银杂化三角形周期纳米粒子阵列。在不同的衬底上生长Au-Ag三角周期阵列,并系统地研究了衬底的折射率对制造和光学性能的影响。首先,通过离散偶极近似(DDA)数值方法对光谱进行模拟,该光谱是衬底和介质折射率的函数。仿真结果表明,由于基板的折射率分别为1.43(石英)和1.68(SF5玻璃),纳米粒子阵列将具有更好的折射率灵敏度(RIS)和品质因数(FOM)。模拟结果还表明,当介质的折射率n增加时,消光光谱的峰值波长发生红移。实验结果还表明,当基材的折射率分别为1.43和1.68时,纳米颗粒阵列与基材具有更好的粘合能力。同时,我们发现纳米颗粒形成了具有六角形紧密堆积结构的大规模单层阵列。最后,在石英和SF5玻璃衬底上制备了金-银杂化三角形纳米粒子阵列,并将其实验消光光谱与模拟结果进行了比较。

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