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Single-step holographic fabrication of large-area periodically corrugated metal films

机译:大面积周期性波纹金属膜的单步全息制造

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摘要

We have developed a simple, high-throughput, and cost-effective method to fabricate one-dimensional and two-dimensional periodically corrugated silver films over centimeter scale areas. This fabrication uses a single-step holographic patterning technique with laser intensities as low as 88.8 mW/cm2 to deposit silver nanoparticles directly from solution to create gratings with periodicities of 570 nm. A dip in the transmission spectrum for these samples is observed due to certain visible wavelengths coupling to surface plasmon polaritons (SPPs) and the peak wavelength of this dip has a linear relationship with the surrounding material's refractive index (RI) with a sensitivity of 553.4 nm/RIU. The figure of merit (the ratio of refractive index sensitivity to the full width at half maximum (FWHM)) is typically in the range of 12–23. Our technique enables single-step fabrication of uniform, sub-wavelength periodic metal structures over a large area with low cost. Such sub-wavelength periodic metal structures are promising candidates as disposable sensors in applications such as affordable environmental monitoring systems and point-of-care diagnostics.
机译:我们已经开发出一种简单,高通量且经济高效的方法来制造在厘米级范围内的一维和二维周期性波纹银膜。该制造工艺采用激光强度低至88.8 mW / cm 2 的单步全息图案化技术,直接从溶液中沉积银纳米颗粒,从而形成周期为570 nm的光栅。由于某些可见波长耦合到表面等离激元极化子(SPP),因此观察到这些样品的透射光谱出现下降,并且该下降的峰值波长与周围材料的折射率(RI)呈线性关系,灵敏度为553.4 nm / RIU。品质因数(折射率灵敏度与半高宽(FWHM)的比)通常在12-23范围内。我们的技术能够在大面积上以低成本一步生产均匀的亚波长周期性金属结构。这种亚波长周期性金属结构有望成为诸如可负担的环境监测系统和即时诊断等应用中的一次性传感器。

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